Person: Garber, Judy
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Publication Prevalence and Predictors of Loss of Wild Type BRCA1 in Estrogen Receptor Positive and Negative BRCA1-Associated Breast Cancers
(BioMed Central, 2010) Fetten, Katharina; Yassin, Yosuf; Buraimoh, Ayodele; Kim, Ji-Young; Legare, Robert D; Tung, Nadine; Miron, A; Schnitt, Stuart; Gautam, Shiva; Kaplan, Jennifer; Szasz, Attila M.; Tian, R; Wang, Zhigang C.; Collins, Laura; Brock, Jane; Krag, Karen; Sgroi, Dennis; Ryan, Paula D.; Silver, Daniel P.; Garber, Judy; Richardson, AndreaIntroduction: The majority of breast cancers that occur in BRCA1 mutation carriers (BRCA1 carriers) are estrogen receptor-negative (ER-). Therefore, it has been suggested that ER negativity is intrinsic to BRCA1 cancers and reflects the cell of origin of these tumors. However, approximately 20% of breast cancers that develop in BRCA1 carriers are ER-positive (ER+); these cancers are more likely to develop as BRCA1 carriers age, suggesting that they may be incidental and unrelated to BRCA1 deficiency. The purpose of this study was to compare the prevalence of loss of heterozygosity due to loss of wild type (wt) BRCA1 in ER+ and ER- breast cancers that have occurred in BRCA1 carriers and to determine whether age at diagnosis or any pathologic features or biomarkers predict for loss of wt BRCA1 in these breast cancers. Methods: Relative amounts of mutated and wt BRCA1 DNA were measured by quantitative polymerase chain reaction performed on laser capture microdissected cancer cells from 42 ER+ and 35 ER- invasive breast cancers that developed in BRCA1 carriers. BRCA1 gene methylation was determined on all cancers in which sufficient DNA was available. Immunostains for cytokeratins (CK) 5/6, 14, 8 and 18, epidermal growth factor receptor and p53 were performed on paraffin sections from tissue microarrays containing these cancers. Results: Loss of wt BRCA1 was equally frequent in ER+ and ER- BRCA1-associated cancers (81.0% vs 88.6%, respectively; P = 0.53). One of nine cancers tested that retained wt BRCA1 demonstrated BRCA1 gene methylation. Age at diagnosis was not significantly different between first invasive ER+ BRCA1 breast cancers with and without loss of wt BRCA1 (mean age 45.2 years vs 50.1 years, respectively; P = 0.51). ER+ BRCA1 cancers that retained wt BRCA1 were significantly more likely than those that lost wt BRCA1 to have a low mitotic rate (odds ratio (OR), 5.16; 95% CI, 1.91 to ∞). BRCA1 cancers with loss of wt BRCA1 were more likely to express basal cytokeratins CK 5/6 or 14 (OR 4.7; 95% CI, 1.85 to ∞). Conclusions: We found no difference in the prevalence of loss of wt BRCA1 between ER+ and ER- invasive BRCA1-associated breast cancers. Our findings suggest that many of the newer therapies for BRCA1 breast cancers designed to exploit the BRCA1 deficiency in these cancers may also be effective in ER+ cancers that develop in this population.
Publication Identification of a BRCA2-Specific Modifier Locus at 6p24 Related to Breast Cancer Risk
(Public Library of Science, 2013) Gaudet, Mia M.; Kuchenbaecker, Karoline B.; Vijai, Joseph; Klein, Robert J.; Kirchhoff, Tomas; McGuffog, Lesley; Barrowdale, Daniel; Dunning, Alison M.; Dennis, Joe; Healey, Sue; Dicks, Ed; Soucy, Penny; Sinilnikova, Olga M.; Pankratz, Vernon S.; Wang, Xianshu; Eldridge, Ronald C.; Tessier, Daniel C.; Vincent, Daniel; Bacot, Francois; Hogervorst, Frans B. L.; Peock, Susan; Stoppa-Lyonnet, Dominique; Peterlongo, Paolo; Schmutzler, Rita K.; Nathanson, Katherine L.; Piedmonte, Marion; Singer, Christian F.; Thomassen, Mads; Hansen, Thomas v. O.; Neuhausen, Susan L.; Blanco, Ignacio; Greene, Mark H.; Weitzel, Jeffrey N.; Andrulis, Irene L.; Goldgar, David E.; D'Andrea, Emma; Caldes, Trinidad; Nevanlinna, Heli; Osorio, Ana; van Rensburg, Elizabeth J.; Arason, Adalgeir; Rennert, Gad; van den Ouweland, Ans M. W.; van der Hout, Annemarie H.; Kets, Carolien M.; Aalfs, Cora M.; Wijnen, Juul T.; Ausems, Margreet G. E. M.; Frost, Debra; Ellis, Steve; Fineberg, Elena; Platte, Radka; Adlard, Julian; Tischkowitz, Marc; Porteous, Mary E.; Damiola, Francesca; Golmard, Lisa; Barjhoux, Laure; Longy, Michel; Belotti, Muriel; Ferrer, Sandra Fert; Mazoyer, Sylvie; Spurdle, Amanda B.; Manoukian, Siranoush; Barile, Monica; Genuardi, Maurizio; Arnold, Norbert; Meindl, Alfons; Sutter, Christian; Wappenschmidt, Barbara; Domchek, Susan M.; Pfeiler, Georg; Friedman, Eitan; Jensen, Uffe Birk; Robson, Mark; Shah, Sohela; Lazaro, Conxi; Benitez, Javier; Southey, Melissa C.; Schmidt, Marjanka K.; Fasching, Peter A.; Peto, Julian; Humphreys, Manjeet K.; Michailidou, Kyriaki; Sawyer, Elinor J.; Burwinkel, Barbara; Guénel, Pascal; Bojesen, Stig E.; Milne, Roger L.; Brenner, Hermann; Lochmann, Magdalena; Aittomäki, Kristiina; Dörk, Thilo; Margolin, Sara; Mannermaa, Arto; Lambrechts, Diether; Chang-Claude, Jenny; Radice, Paolo; Giles, Graham G.; Haiman, Christopher A.; Winqvist, Robert; Devillee, Peter; García-Closas, Montserrat; Schoof, Nils; Hooning, Maartje J.; Cox, Angela; Pharoah, Paul D. P.; Jakubowska, Anna; Orr, Nick; González-Neira, Anna; Pita, Guillermo; Alonso, M. Rosario; Hall, Per; Couch, Fergus J.; Simard, Jacques; Easton, Douglas F.; Chenevix-Trench, Georgia; Antoniou, Antonis C.; Offit, Kenneth; Lee, Andrew; Evans, D. Gareth; Jacobs, Chris; Mai, Phuong L.; Wang, Qin; Altshuler, David; Garber, JudyCommon genetic variants contribute to the observed variation in breast cancer risk for BRCA2 mutation carriers; those known to date have all been found through population-based genome-wide association studies (GWAS). To comprehensively identify breast cancer risk modifying loci for BRCA2 mutation carriers, we conducted a deep replication of an ongoing GWAS discovery study. Using the ranked P-values of the breast cancer associations with the imputed genotype of 1.4 M SNPs, 19,029 SNPs were selected and designed for inclusion on a custom Illumina array that included a total of 211,155 SNPs as part of a multi-consortial project. DNA samples from 3,881 breast cancer affected and 4,330 unaffected BRCA2 mutation carriers from 47 studies belonging to the Consortium of Investigators of Modifiers of BRCA1/2 were genotyped and available for analysis. We replicated previously reported breast cancer susceptibility alleles in these BRCA2 mutation carriers and for several regions (including FGFR2, MAP3K1, CDKN2A/B, and PTHLH) identified SNPs that have stronger evidence of association than those previously published. We also identified a novel susceptibility allele at 6p24 that was inversely associated with risk in BRCA2 mutation carriers (rs9348512; per allele HR = 0.85, 95% CI 0.80–0.90, P = 3.9×10−8). This SNP was not associated with breast cancer risk either in the general population or in BRCA1 mutation carriers. The locus lies within a region containing TFAP2A, which encodes a transcriptional activation protein that interacts with several tumor suppressor genes. This report identifies the first breast cancer risk locus specific to a BRCA2 mutation background. This comprehensive update of novel and previously reported breast cancer susceptibility loci contributes to the establishment of a panel of SNPs that modify breast cancer risk in BRCA2 mutation carriers. This panel may have clinical utility for women with BRCA2 mutations weighing options for medical prevention of breast cancer.
Publication The impact of tumor profiling approaches and genomic data strategies for cancer precision medicine
(BioMed Central, 2016) Garofalo, Andrea; Sholl, Lynette; Reardon, Brendan; Taylor-Weiner, Amaro; Amin-Mansour, Ali; Miao, Diana; Liu, David; Oliver, Nelly; MacConaill, Laura; Ducar, Matthew; Rojas-Rudilla, Vanesa; Giannakis, Marios; Ghazani, Arezou; Gray, Stacy; Janne, Pasi; Garber, Judy; Joffe, Steve; Lindeman, Neal; Wagle, Nikhil; Garraway, Levi; Van Allen, EliezerBackground: The diversity of clinical tumor profiling approaches (small panels to whole exomes with matched or unmatched germline analysis) may engender uncertainty about their benefits and liabilities, particularly in light of reported germline false positives in tumor-only profiling and use of global mutational and/or neoantigen data. The goal of this study was to determine the impact of genomic analysis strategies on error rates and data interpretation across contexts and ancestries. Methods: We modeled common tumor profiling modalities—large (n = 300 genes), medium (n = 48 genes), and small (n = 15 genes) panels—using clinical whole exomes (WES) from 157 patients with lung or colon adenocarcinoma. We created a tumor-only analysis algorithm to assess germline false positive rates, the impact of patient ancestry on tumor-only results, and neoantigen detection. Results: After optimizing a germline filtering strategy, the germline false positive rate with tumor-only large panel sequencing was 14 % (144/1012 variants). For patients whose tumor-only results underwent molecular pathologist review (n = 91), 50/54 (93 %) false positives were correctly interpreted as uncertain variants. Increased germline false positives were observed in tumor-only sequencing of non-European compared with European ancestry patients (p < 0.001; Fisher’s exact) when basic germline filtering approaches were used; however, the ExAC database (60,706 germline exomes) mitigated this disparity (p = 0.53). Matched and unmatched large panel mutational load correlated with WES mutational load (r2 = 0.99 and 0.93, respectively; p < 0.001). Neoantigen load also correlated (r2 = 0.80; p < 0.001), though WES identified a broader spectrum of neoantigens. Small panels did not predict mutational or neoantigen load. Conclusions: Large tumor-only targeted panels are sufficient for most somatic variant identification and mutational load prediction if paired with expanded germline analysis strategies and molecular pathologist review. Paired germline sequencing reduced overall false positive mutation calls and WES provided the most neoantigens. Without patient-matched germline data, large germline databases are needed to minimize false positive mutation calling and mitigate ethnic disparities. Electronic supplementary material The online version of this article (doi:10.1186/s13073-016-0333-9) contains supplementary material, which is available to authorized users.
Publication Whole-exome sequencing and clinical interpretation of FFPE tumor samples to guide precision cancer medicine
(2013) Allen, Eliezer M. Van; Wagle, Nikhil; Stojanov, Petar; Perrin, Danielle L.; Cibulskis, Kristian; Marlow, Sara; Jane-Valbuena, Judit; Friedrich, Dennis C.; Kryukov, Gregory; Carter, Scott L.; McKenna, Aaron; Sivachenko, Andrey; Rosenberg, Mara; Kiezun, Adam; Voet, Douglas; Lawrence, Michael; Lichtenstein, Lee T.; Gentry, Jeff G.; Huang, Franklin; Fostel, Jennifer; Farlow, Deborah; Barbie, David; Gandhi, Leena; Lander, Eric; Gray, Stacy; Joffe, Steven; Janne, Pasi; Garber, Judy; MacConaill, Laura; Lindeman, Neal; Rollins, Barrett; Kantoff, Philip; Fisher, Sheila A.; Gabriel, Stacey; Getz, Gad; Garraway, LeviTranslating whole exome sequencing (WES) for prospective clinical use may impact the care of cancer patients; however, multiple innovations are necessary for clinical implementation. These include: (1) rapid and robust WES from formalin-fixed paraffin embedded (FFPE) tumor tissue, (2) analytical output similar to data from frozen samples, and (3) clinical interpretation of WES data for prospective use. Here, we describe a prospective clinical WES platform for archival FFPE tumor samples. The platform employs computational methods for effective clinical analysis and interpretation of WES data. When applied retrospectively to 511 exomes, the interpretative framework revealed a “long tail” of somatic alterations in clinically important genes. Prospective application of this approach identified clinically relevant alterations in 15/16 patients. In one patient, previously undetected findings guided clinical trial enrollment leading to an objective clinical response. Overall, this methodology may inform the widespread implementation of precision cancer medicine.
Publication BRCA1 haploinsufficiency for replication stress suppression in primary cells
(Nature Pub. Group, 2014) Pathania, Shailja; Bade, Sangeeta; Le Guillou, Morwenna; Burke, Karly; Reed, Rachel; Bowman-Colin, Christian; Su, Ying; Ting, David; Polyak, Kornelia; Richardson, Andrea; Feunteun, Jean; Garber, Judy; Livingston, DavidBRCA1—a breast and ovarian cancer suppressor gene—promotes genome integrity. To study the functionality of BRCA1 in the heterozygous state, we established a collection of primary human BRCA1+/+ and BRCA1mut/+ mammary epithelial cells and fibroblasts. Here we report that all BRCA1mut/+ cells exhibited multiple normal BRCA1 functions, including the support of homologous recombination- type double-strand break repair (HR-DSBR), checkpoint functions, centrosome number control, spindle pole formation, Slug expression and satellite RNA suppression. In contrast, the same cells were defective in stalled replication fork repair and/or suppression of fork collapse, that is, replication stress. These defects were rescued by reconstituting BRCA1mut/+ cells with wt BRCA1. In addition, we observed ‘conditional’ haploinsufficiency for HR-DSBR in BRCA1mut/+ cells in the face of replication stress. Given the importance of replication stress in epithelial cancer development and of an HR defect in breast cancer pathogenesis, both defects are candidate contributors to tumorigenesis in BRCA1-deficient mammary tissue.
Publication Association and prognostic significance of BRCA1/2-mutation status with neoantigen load, number of tumor-infiltrating lymphocytes and expression of PD-1/PD-L1 in high grade serous ovarian cancer
(Impact Journals LLC, 2016) Strickland, Kyle C.; Howitt, Brooke E.; Shukla, Sachet A.; Rodig, Scott; Ritterhouse, Lauren L.; Liu, Joyce F.; Garber, Judy; Chowdhury, Dipanjan; Wu, Catherine; D'Andrea, Alan; Matulonis, Ursula; Konstantinopoulos, PanagiotisImmune checkpoint inhibitors (e.g., anti-PD-1 and anti-PD-L1 antibodies) have demonstrated remarkable efficacy against hypermutated cancers such as melanomas and lung carcinomas. One explanation for this effect is that hypermutated lesions harbor more tumor-specific neoantigens that stimulate recruitment of an increased number of tumor-infiltrating lymphocytes (TILs), which is counterbalanced by overexpression of immune checkpoints such as PD-1 or PD-L1. Given that BRCA1/2-mutated high grade serous ovarian cancers (HGSOCs) exhibit a higher mutational load and a unique mutational signature with an elevated number of larger indels up to 50 bp, we hypothesized that they may also harbor more tumor-specific neoantigens, and, therefore, exhibit increased TILs and PD-1/PD-L1 expression. Here, we report significantly higher predicted neoantigens in BRCA1/2-mutated tumors compared to tumors without alterations in homologous recombination (HR) genes (HR-proficient tumors). Tumors with higher neoantigen load were associated with improved overall survival and higher expression of immune genes associated with tumor cytotoxicity such as genes of the TCR, the IFN-gamma and the TNFR pathways. Furthermore, immunohistochemistry studies demonstrated that BRCA1/2-mutated tumors exhibited significantly increased CD3+ and CD8+ TILs, as well as elevated expression of PD-1 and PD-L1 in tumor-associated immune cells compared to HR-proficient tumors. Survival analysis showed that both BRCA1/2-mutation status and number of TILs were independently associated with outcome. Of note, two distinct groups of HGSOCs, one with very poor prognosis (HR proficient with low number of TILs) and one with very good prognosis (BRCA1/2-mutated tumors with high number of TILs) were defined. These findings support a link between BRCA1/2-mutation status, immunogenicity and survival, and suggesting that BRCA1/2-mutated HGSOCs may be more sensitive to PD-1/PD-L1 inhibitors compared to HR-proficient HGSOCs.
Publication Assessing Associations between the AURKA-HMMR-TPX2-TUBG1 Functional Module and Breast Cancer Risk in BRCA1/2 Mutation Carriers
(Public Library of Science, 2015) Blanco, Ignacio; Kuchenbaecker, Karoline; Cuadras, Daniel; Wang, Xianshu; Barrowdale, Daniel; de Garibay, Gorka Ruiz; Librado, Pablo; Sánchez-Gracia, Alejandro; Rozas, Julio; Bonifaci, Núria; McGuffog, Lesley; Pankratz, Vernon S.; Islam, Abul; Mateo, Francesca; Berenguer, Antoni; Petit, Anna; Català, Isabel; Brunet, Joan; Feliubadaló, Lidia; Tornero, Eva; Benítez, Javier; Osorio, Ana; Cajal, Teresa Ramón y; Nevanlinna, Heli; Aittomäki, Kristiina; Arun, Banu K.; Toland, Amanda E.; Karlan, Beth Y.; Walsh, Christine; Lester, Jenny; Greene, Mark H.; Mai, Phuong L.; Nussbaum, Robert L.; Andrulis, Irene L.; Domchek, Susan M.; Nathanson, Katherine L.; Rebbeck, Timothy R.; Barkardottir, Rosa B.; Jakubowska, Anna; Lubinski, Jan; Durda, Katarzyna; Jaworska-Bieniek, Katarzyna; Claes, Kathleen; Van Maerken, Tom; Díez, Orland; Hansen, Thomas V.; Jønson, Lars; Gerdes, Anne-Marie; Ejlertsen, Bent; de la Hoya, Miguel; Caldés, Trinidad; Dunning, Alison M.; Oliver, Clare; Fineberg, Elena; Cook, Margaret; Peock, Susan; McCann, Emma; Murray, Alex; Jacobs, Chris; Pichert, Gabriella; Lalloo, Fiona; Chu, Carol; Dorkins, Huw; Paterson, Joan; Ong, Kai-Ren; Teixeira, Manuel R.; Hogervorst, Frans B. L.; van der Hout, Annemarie H.; Seynaeve, Caroline; van der Luijt, Rob B.; Ligtenberg, Marjolijn J. L.; Devilee, Peter; Wijnen, Juul T.; Rookus, Matti A.; Meijers-Heijboer, Hanne E. J.; Blok, Marinus J.; van den Ouweland, Ans M. W.; Aalfs, Cora M.; Rodriguez, Gustavo C.; Phillips, Kelly-Anne A.; Piedmonte, Marion; Nerenstone, Stacy R.; Bae-Jump, Victoria L.; O'Malley, David M.; Ratner, Elena S.; Schmutzler, Rita K.; Wappenschmidt, Barbara; Rhiem, Kerstin; Engel, Christoph; Meindl, Alfons; Ditsch, Nina; Arnold, Norbert; Plendl, Hansjoerg J.; Niederacher, Dieter; Sutter, Christian; Wang-Gohrke, Shan; Steinemann, Doris; Preisler-Adams, Sabine; Kast, Karin; Varon-Mateeva, Raymonda; Gehrig, Andrea; Bojesen, Anders; Pedersen, Inge Sokilde; Sunde, Lone; Jensen, Uffe Birk; Thomassen, Mads; Kruse, Torben A.; Foretova, Lenka; Peterlongo, Paolo; Bernard, Loris; Peissel, Bernard; Scuvera, Giulietta; Manoukian, Siranoush; Radice, Paolo; Ottini, Laura; Montagna, Marco; Agata, Simona; Maugard, Christine; Simard, Jacques; Soucy, Penny; Berger, Andreas; Fink-Retter, Anneliese; Singer, Christian F.; Rappaport, Christine; Geschwantler-Kaulich, Daphne; Tea, Muy-Kheng; Pfeiler, Georg; John, Esther M.; Miron, Alex; Neuhausen, Susan L.; Terry, Mary Beth; Chung, Wendy K.; Daly, Mary B.; Goldgar, David E.; Janavicius, Ramunas; Dorfling, Cecilia M.; van Rensburg, Elisabeth J.; Fostira, Florentia; Konstantopoulou, Irene; Garber, Judy; Godwin, Andrew K.; Olah, Edith; Narod, Steven A.; Rennert, Gad; Paluch, Shani Shimon; Laitman, Yael; Friedman, Eitan; Liljegren, Annelie; Rantala, Johanna; Stenmark-Askmalm, Marie; Loman, Niklas; Imyanitov, Evgeny N.; Hamann, Ute; Spurdle, Amanda B.; Healey, Sue; Weitzel, Jeffrey N.; Herzog, Josef; Margileth, David; Gorrini, Chiara; Esteller, Manel; Gómez, Antonio; Sayols, Sergi; Vidal, Enrique; Heyn, Holger; Stoppa-Lyonnet, Dominique; Léoné, Melanie; Barjhoux, Laure; Fassy-Colcombet, Marion; de Pauw, Antoine; Lasset, Christine; Ferrer, Sandra Fert; Castera, Laurent; Berthet, Pascaline; Cornelis, François; Bignon, Yves-Jean; Damiola, Francesca; Mazoyer, Sylvie; Sinilnikova, Olga M.; Maxwell, Christopher A.; Vijai, Joseph; Robson, Mark; Kauff, Noah; Corines, Marina J.; Villano, Danylko; Cunningham, Julie; Lee, Adam; Lindor, Noralane; Lázaro, Conxi; Easton, Douglas F.; Offit, Kenneth; Chenevix-Trench, Georgia; Couch, Fergus J.; Antoniou, Antonis C.; Pujana, Miguel AngelWhile interplay between BRCA1 and AURKA-RHAMM-TPX2-TUBG1 regulates mammary epithelial polarization, common genetic variation in HMMR (gene product RHAMM) may be associated with risk of breast cancer in BRCA1 mutation carriers. Following on these observations, we further assessed the link between the AURKA-HMMR-TPX2-TUBG1 functional module and risk of breast cancer in BRCA1 or BRCA2 mutation carriers. Forty-one single nucleotide polymorphisms (SNPs) were genotyped in 15,252 BRCA1 and 8,211 BRCA2 mutation carriers and subsequently analyzed using a retrospective likelihood approach. The association of HMMR rs299290 with breast cancer risk in BRCA1 mutation carriers was confirmed: per-allele hazard ratio (HR) = 1.10, 95% confidence interval (CI) 1.04 – 1.15, p = 1.9 x 10−4 (false discovery rate (FDR)-adjusted p = 0.043). Variation in CSTF1, located next to AURKA, was also found to be associated with breast cancer risk in BRCA2 mutation carriers: rs2426618 per-allele HR = 1.10, 95% CI 1.03 – 1.16, p = 0.005 (FDR-adjusted p = 0.045). Assessment of pairwise interactions provided suggestions (FDR-adjusted pinteraction values > 0.05) for deviations from the multiplicative model for rs299290 and CSTF1 rs6064391, and rs299290 and TUBG1 rs11649877 in both BRCA1 and BRCA2 mutation carriers. Following these suggestions, the expression of HMMR and AURKA or TUBG1 in sporadic breast tumors was found to potentially interact, influencing patients’ survival. Together, the results of this study support the hypothesis of a causative link between altered function of AURKA-HMMR-TPX2-TUBG1 and breast carcinogenesis in BRCA1/2 mutation carriers.
Publication Oncologists' and Cancer Patients' Views on Whole-Exome Sequencing and Incidental Findings: Results from The CanSeq Study
(2016) Gray, Stacy; Park, Elyse; Najita, Julie; Martins, Yolanda; Traeger, Lara; Bair, Elizabeth; Gagne, Joshua; Garber, Judy; Janne, Pasi; Lindeman, Neal; Lowenstein, Carol; Oliver, Nelly; Sholl, Lynette; Van Allen, Eliezer; Wagle, Nikhil; Wood, Sam; Garraway, Levi; Joffe, StevenPurpose While targeted sequencing improves outcomes for many cancer patients, how somatic and germline whole-exome sequencing (WES) will integrate into care remains uncertain. Methods: We conducted surveys and interviews, within a study of WES integration at an academic center, to determine oncologists' attitudes about WES and to identify lung and colorectal cancer patients' preferences for learning WES findings. Results: 167 patients (85% white, 58% female, mean age 60) and 27 oncologists (22% female) participated. Although oncologists had extensive experience ordering somatic tests (median 100/year), they had little experience ordering germline tests. Oncologists intended to disclose most WES results to patients but anticipated numerous challenges in using WES. Patients had moderately low levels of genetic knowledge (mean 4 correct of 7). Most patients chose to learn results that could help select a clinical trial, pharmacogenetic and positive prognostic results, and results suggesting inherited predisposition to cancer and treatable non-cancer conditions (all ≥95%). Fewer chose to receive negative prognostic results (84%) and results suggesting predisposition to untreatable non-cancer conditions (85%). Conclusion: The majority of patients want most cancer-related and incidental WES results. Patients' low levels of genetic knowledge and oncologists' inexperience with large-scale sequencing presage challenges to implementing paired WES in practice.
Publication The feasibility of using natural language processing to extract clinical information from breast pathology reports
(Medknow, 2012) Hughes, Kevin; Buckley, Julliette M; Coopey, Suzanne; Sharko, John; Polubriaginof, Fernanda; Drohan, Brian; Belli, Ahmet K; Kim, Elizabeth M. H.; Garber, Judy; Smith, Barbara; Gadd, Michele; Specht, Michelle; Roche, Constance A; Gudewicz, Thomas MichaelObjective: The opportunity to integrate clinical decision support systems into clinical practice is limited due to the lack of structured, machine readable data in the current format of the electronic health record. Natural language processing has been designed to convert free text into machine readable data. The aim of the current study was to ascertain the feasibility of using natural language processing to extract clinical information from >76,000 breast pathology reports. Approach and Procedure: Breast pathology reports from three institutions were analyzed using natural language processing software (Clearforest, Waltham, MA) to extract information on a variety of pathologic diagnoses of interest. Data tables were created from the extracted information according to date of surgery, side of surgery, and medical record number. The variety of ways in which each diagnosis could be represented was recorded, as a means of demonstrating the complexity of machine interpretation of free text. Results: There was widespread variation in how pathologists reported common pathologic diagnoses. We report, for example, 124 ways of saying invasive ductal carcinoma and 95 ways of saying invasive lobular carcinoma. There were >4000 ways of saying invasive ductal carcinoma was not present. Natural language processor sensitivity and specificity were 99.1% and 96.5% when compared to expert human coders. Conclusion: We have demonstrated how a large body of free text medical information such as seen in breast pathology reports, can be converted to a machine readable format using natural language processing, and described the inherent complexities of the task.
Publication No clinical utility of KRAS variant rs61764370 for ovarian or breast cancer
(Elsevier BV, 2016) Hollestelle, Antoinette; van der Baan, Frederieke H.; Berchuck, Andrew; Johnatty, Sharon E.; Aben, Katja K.; Agnarsson, Bjarni A.; Aittomäki, Kristiina; Alducci, Elisa; Andrulis, Irene L.; Anton-Culver, Hoda; Antonenkova, Natalia N.; Antoniou, Antonis C.; Apicella, Carmel; Arndt, Volker; Arnold, Norbert; Arun, Banu K.; Arver, Brita; Ashworth, Alan; Baglietto, Laura; Balleine, Rosemary; Bandera, Elisa V.; Barrowdale, Daniel; Bean, Yukie T.; Beckmann, Lars; Beckmann, Matthias W.; Benitez, Javier; Berger, Andreas; Berger, Raanan; Beuselinck, Benoit; Bisogna, Maria; Bjorge, Line; Blomqvist, Carl; Bogdanova, Natalia V.; Bojesen, Anders; Bojesen, Stig E.; Bolla, Manjeet K.; Bonanni, Bernardo; Brand, Judith S.; Brauch, Hiltrud; Brenner, Hermann; Brinton, Louise; Brooks-Wilson, Angela; Bruinsma, Fiona; Brunet, Joan; Brüning, Thomas; Budzilowska, Agnieszka; Bunker, Clareann H.; Burwinkel, Barbara; Butzow, Ralf; Buys, Saundra S.; Caligo, Maria A.; Campbell, Ian; Carter, Jonathan; Chang-Claude, Jenny; Chanock, Stephen J.; Claes, Kathleen B.M.; Collée, J. Margriet; Cook, Linda S.; Couch, Fergus J.; Cox, Angela; Cramer, Daniel; Cross, Simon S.; Cunningham, Julie M.; Cybulski, Cezary; Czene, Kamila; Damiola, Francesca; Dansonka-Mieszkowska, Agnieszka; Darabi, Hatef; de la Hoya, Miguel; deFazio, Anna; Dennis, Joseph; Devilee, Peter; Dicks, Ed M.; Diez, Orland; Doherty, Jennifer A.; Domchek, Susan M.; Dorfling, Cecilia M.; Dörk, Thilo; Silva, Isabel Dos Santos; du Bois, Andreas; Dumont, Martine; Dunning, Alison M.; Duran, Mercedes; Easton, Douglas F.; Eccles, Diana; Edwards, Robert P.; Ehrencrona, Hans; Ejlertsen, Bent; Ekici, Arif B.; Ellis, Steve D.; Engel, Christoph; Eriksson, Mikael; Fasching, Peter A.; Feliubadalo, Lidia; Figueroa, Jonine; Flesch-Janys, Dieter; Fletcher, Olivia; Fontaine, Annette; Fortuzzi, Stefano; Fostira, Florentia; Fridley, Brooke L.; Friebel, Tara; Friedman, Eitan; Friel, Grace; Frost, Debra; Garber, Judy; García-Closas, Montserrat; Gayther, Simon A.; Gentry-Maharaj, Aleksandra; Gerdes, Anne-Marie; Giles, Graham G.; Glasspool, Rosalind; Glendon, Gord; Godwin, Andrew K.; Goodman, Marc T.; Gore, Martin; Greene, Mark H.; Grip, Mervi; Gronwald, Jacek; Gschwantler Kaulich, Daphne; Guénel, Pascal; Guzman, Starr R.; Haeberle, Lothar; Haiman, Christopher A.; Hall, Per; Halverson, Sandra L.; Hamann, Ute; Hansen, Thomas V.O.; Harter, Philipp; Hartikainen, Jaana M.; Healey, Sue; Hein, Alexander; Heitz, Florian; Henderson, Brian E.; Herzog, Josef; T Hildebrandt, Michelle A.; Høgdall, Claus K.; Høgdall, Estrid; Hogervorst, Frans B.L.; Hopper, John L.; Humphreys, Keith; Huzarski, Tomasz; Imyanitov, Evgeny N.; Isaacs, Claudine; Jakubowska, Anna; Janavicius, Ramunas; Jaworska, Katarzyna; Jensen, Allan; Jensen, Uffe Birk; Johnson, Nichola; Jukkola-Vuorinen, Arja; Kabisch, Maria; Karlan, Beth Y.; Kataja, Vesa; Kauff, Noah; Kelemen, Linda E.; Kerin, Michael J.; Kiemeney, Lambertus A.; Kjaer, Susanne K.; Knight, Julia A.; Knol-Bout, Jacoba P.; Konstantopoulou, Irene; Kosma, Veli-Matti; Krakstad, Camilla; Kristensen, Vessela; Kuchenbaecker, Karoline B.; Kupryjanczyk, Jolanta; Laitman, Yael; Lambrechts, Diether; Lambrechts, Sandrina; Larson, Melissa C.; Lasa, Adriana; Laurent-Puig, Pierre; Lazaro, Conxi; Le, Nhu D.; Le Marchand, Loic; Leminen, Arto; Lester, Jenny; Levine, Douglas A.; Li, Jingmei; Liang, Dong; Lindblom, Annika; Lindor, Noralane; Lissowska, Jolanta; Long, Jirong; Lu, Karen H.; Lubinski, Jan; Lundvall, Lene; Lurie, Galina; Mai, Phuong L.; Mannermaa, Arto; Margolin, Sara; Mariette, Frederique; Marme, Frederik; Martens, John W.M.; Massuger, Leon F.A.G.; Maugard, Christine; Mazoyer, Sylvie; McGuffog, Lesley; McGuire, Valerie; McLean, Catriona; McNeish, Iain; Meindl, Alfons; Menegaux, Florence; Menéndez, Primitiva; Menkiszak, Janusz; Menon, Usha; Mensenkamp, Arjen R.; Miller, Nicola; Milne, Roger L.; Modugno, Francesmary; Montagna, Marco; Moysich, Kirsten B.; Müller, Heiko; Mulligan, Anna Marie; Muranen, Taru A.; Narod, Steven A.; Nathanson, Katherine L.; Ness, Roberta B.; Neuhausen, Susan L.; Nevanlinna, Heli; Neven, Patrick; Nielsen, Finn C.; Nielsen, Sune F.; Nordestgaard, Børge G.; Nussbaum, Robert L.; Odunsi, Kunle; Offit, Kenneth; Olah, Edith; Olopade, Olufunmilayo I.; Olson, Janet E.; Olson, Sara H.; Oosterwijk, Jan C.; Orlow, Irene; Orr, Nick; Orsulic, Sandra; Osorio, Ana; Ottini, Laura; Paul, James; Pearce, Celeste L.; Pedersen, Inge Sokilde; Peissel, Bernard; Pejovic, Tanja; Pelttari, Liisa M.; Perkins, Jo; Permuth-Wey, Jenny; Peterlongo, Paolo; Peto, Julian; Phelan, Catherine M.; Phillips, Kelly-Anne; Piedmonte, Marion; Pike, Malcolm C.; Platte, Radka; Plisiecka-Halasa, Joanna; Poole, Elizabeth M.; Poppe, Bruce; Pylkäs, Katri; Radice, Paolo; Ramus, Susan J.; Rebbeck, Timothy; Reed, Malcolm W.R.; Rennert, Gad; Risch, Harvey A.; Robson, Mark; Rodriguez, Gustavo C.; Romero, Atocha; Rossing, Mary Anne; Rothstein, Joseph H.; Rudolph, Anja; Runnebaum, Ingo; Salani, Ritu; Salvesen, Helga B.; Sawyer, Elinor J.; Schildkraut, Joellen M.; Schmidt, Marjanka K.; Schmutzler, Rita K.; Schneeweiss, Andreas; Schoemaker, Minouk J.; Schrauder, Michael G.; Schumacher, Fredrick; Schwaab, Ira; Scuvera, Giulietta; Sellers, Thomas A.; Severi, Gianluca; Seynaeve, Caroline M.; Shah, Mitul; Shrubsole, Martha; Siddiqui, Nadeem; Sieh, Weiva; Simard, Jacques; Singer, Christian F.; Sinilnikova, Olga M.; Smeets, Dominiek; Sohn, Christof; Soller, Maria; Song, Honglin; Soucy, Penny; Southey, Melissa C.; Stegmaier, Christa; Stoppa-Lyonnet, Dominique; Sucheston, Lara; Swerdlow, Anthony; Tangen, Ingvild L.; Tea, Muy-Kheng; Teixeira, Manuel R.; Terry, Kathryn; Terry, Mary Beth; Thomassen, Mads; Thompson, Pamela J.; Tihomirova, Laima; Tischkowitz, Marc; Toland, Amanda Ewart; Tollenaar, Rob A.E.M.; Tomlinson, Ian; Torres, Diana; Truong, Thérèse; Tsimiklis, Helen; Tung, Nadine; Tworoger, Shelley; Tyrer, Jonathan P.; Vachon, Celine M.; Van, Laura J.; van Altena, Anne M.; Van Asperen, C.J.; van den Berg, David; van den Ouweland, Ans M.W.; van Doorn, Helena C.; Van Nieuwenhuysen, Els; van Rensburg, Elizabeth J.; Vergote, Ignace; Verhoef, Senno; Vierkant, Robert A.; Vijai, Joseph; Vitonis, Allison F.; von Wachenfeldt, Anna; Walsh, Christine; Wang, Qin; Wang-Gohrke, Shan; Wappenschmidt, Barbara; Weischer, Maren; Weitzel, Jeffrey N.; Weltens, Caroline; Wentzensen, Nicolas; Whittemore, Alice S.; Wilkens, Lynne R.; Winqvist, Robert; Wu, Anna H.; Wu, Xifeng; Yang, Hannah P.; Zaffaroni, Daniela; Pilar Zamora, M.; Zheng, Wei; Ziogas, Argyrios; Chenevix-Trench, Georgia; Pharoah, Paul D.P.; Rookus, Matti A.; Hooning, Maartje J.; Goode, Ellen L.OBJECTIVE: Clinical genetic testing is commercially available for rs61764370, an inherited variant residing in a KRAS 3' UTR microRNA binding site, based on suggested associations with increased ovarian and breast cancer risk as well as with survival time. However, prior studies, emphasizing particular subgroups, were relatively small. Therefore, we comprehensively evaluated ovarian and breast cancer risks as well as clinical outcome associated with rs61764370. METHODS: Centralized genotyping and analysis were performed for 140,012 women enrolled in the Ovarian Cancer Association Consortium (15,357 ovarian cancer patients; 30,816 controls), the Breast Cancer Association Consortium (33,530 breast cancer patients; 37,640 controls), and the Consortium of Modifiers of BRCA1 and BRCA2 (14,765 BRCA1 and 7904 BRCA2 mutation carriers). RESULTS: We found no association with risk of ovarian cancer (OR=0.99, 95% CI 0.94-1.04, p=0.74) or breast cancer (OR=0.98, 95% CI 0.94-1.01, p=0.19) and results were consistent among mutation carriers (BRCA1, ovarian cancer HR=1.09, 95% CI 0.97-1.23, p=0.14, breast cancer HR=1.04, 95% CI 0.97-1.12, p=0.27; BRCA2, ovarian cancer HR=0.89, 95% CI 0.71-1.13, p=0.34, breast cancer HR=1.06, 95% CI 0.94-1.19, p=0.35). Null results were also obtained for associations with overall survival following ovarian cancer (HR=0.94, 95% CI 0.83-1.07, p=0.38), breast cancer (HR=0.96, 95% CI 0.87-1.06, p=0.38), and all other previously-reported associations. CONCLUSIONS: rs61764370 is not associated with risk of ovarian or breast cancer nor with clinical outcome for patients with these cancers. Therefore, genotyping this variant has no clinical utility related to the prediction or management of these cancers.