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Musunuru, Kiran

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Musunuru

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Kiran

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Musunuru, Kiran

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Now showing 1 - 10 of 18
  • Publication

    Multi-Ethnic Analysis of Lipid-Associated Loci: The NHLBI CARe Project

    (Public Library of Science, 2012) Romaine, Simon P. R.; Lettre, Guillaume; Wilson, James G.; Volcik, Kelly A.; Tsai, Michael Y.; Taylor, Herman A.; Schreiner, Pamela J.; Rotter, Jerome I.; Rich, Stephen S.; Psaty, Bruce M.; Papanicolaou, George J.; Ordovas, Jose M.; Liu, Kiang; Krauss, Ronald M.; Glazer, Nicole L.; Gabriel, Stacey B.; Fornage, Myriam; Cupples, L. Adrienne; Buxbaum, Sarah G.; Boerwinkle, Eric; Ballantyne, Christie M.; Kathiresan, Sekar; Rader, Daniel J.; Musunuru, Kiran; Redline, Susan

    Background: Whereas it is well established that plasma lipid levels have substantial heritability within populations, it remains unclear how many of the genetic determinants reported in previous studies (largely performed in European American cohorts) are relevant in different ethnicities. Methodology/Principal Findings: We tested a set of (\sim)50,000 polymorphisms from (\sim)2,000 candidate genes and genetic loci from genome-wide association studies (GWAS) for association with low-density lipoprotein cholesterol (LDL-C), high-density lipoprotein cholesterol (HDL-C), and triglycerides (TG) in 25,000 European Americans and 9,000 African Americans in the National Heart, Lung, and Blood Institute (NHLBI) Candidate Gene Association Resource (CARe). We replicated associations for a number of genes in one or both ethnicities and identified a novel lipid-associated variant in a locus harboring ICAM1. We compared the architecture of genetic loci associated with lipids in both African Americans and European Americans and found that the same genes were relevant across ethnic groups but the specific associated variants at each gene often differed. Conclusions/Significance: We identify or provide further evidence for a number of genetic determinants of plasma lipid levels through population association studies. In many loci the determinants appear to differ substantially between African Americans and European Americans.

  • Publication

    Cardiovascular Pharmacogenomics: Current Status and Future Directions—Report of a National Heart, Lung, and Blood Institute Working Group

    (Blackwell Publishing Ltd, 2012) Musunuru, Kiran; Roden, Dan M.; Boineau, Robin; Bristow, Michael R.; McCaffrey, Timothy A.; Newton-Cheh, Christopher; Paltoo, Dina N.; Rosenberg, Yves; Wohlgemuth, Jay G.; Zineh, Issam; Hasan, Ahmed A. K.
  • Publication

    Modelling kidney disease with CRISPR-mutant kidney organoids derived from human pluripotent epiblast spheroids

    (Nature Pub. Group, 2015) Freedman, Benjamin S.; Brooks, Craig R.; Lam, Albert; Fu, Hongxia; Morizane, Ryuji; Agrawal, Vishesh; Saad, Abdelaziz F.; Li, Michelle; Hughes, Michael R.; Werff, Ryan Vander; Peters, Derek T.; Lu, Junjie; Baccei, Anna; Siedlecki, Andrew; Valerius, M. Todd; Musunuru, Kiran; McNagny, Kelly M.; Steinman, Theodore; Zhou, Jing; Lerou, Paul; Bonventre, Joseph

    Human-pluripotent-stem-cell-derived kidney cells (hPSC-KCs) have important potential for disease modelling and regeneration. Whether the hPSC-KCs can reconstitute tissue-specific phenotypes is currently unknown. Here we show that hPSC-KCs self-organize into kidney organoids that functionally recapitulate tissue-specific epithelial physiology, including disease phenotypes after genome editing. In three-dimensional cultures, epiblast-stage hPSCs form spheroids surrounding hollow, amniotic-like cavities. GSK3β inhibition differentiates spheroids into segmented, nephron-like kidney organoids containing cell populations with characteristics of proximal tubules, podocytes and endothelium. Tubules accumulate dextran and methotrexate transport cargoes, and express kidney injury molecule-1 after nephrotoxic chemical injury. CRISPR/Cas9 knockout of podocalyxin causes junctional organization defects in podocyte-like cells. Knockout of the polycystic kidney disease genes PKD1 or PKD2 induces cyst formation from kidney tubules. All of these functional phenotypes are distinct from effects in epiblast spheroids, indicating that they are tissue specific. Our findings establish a reproducible, versatile three-dimensional framework for human epithelial disease modelling and regenerative medicine applications.

  • Publication

    From Noncoding Variant to Phenotype via SORT1 at the 1p13 Cholesterol Locus

    (Springer Nature, 2010) Musunuru, Kiran; Strong, Alanna; Frank-Kamenetsky, Maria; Lee, Noemi E.; Ahfeldt, Tim; Sachs, Katherine V.; Li, Xiaoyu; Li, Hui; Kuperwasser, Nicolas; Ruda, Vera M.; Pirruccello, James; Muchmore, Brian; Prokunina-Olsson, Ludmila; Hall, Jennifer L.; Schadt, Eric E.; Morales, Carlos R.; Lund-Katz, Sissel; Phillips, Michael C.; Wong, Jamie; Cantley, William; Racie, Timothy; Ejebe, Kenechi G.; Orho-Melander, Marju; Melander, Olle; Koteliansky, Victor; Fitzgerald, Kevin; Krauss, Ronald M.; Cowan, Chad; Kathiresan, Sekar; Rader, Daniel J.

    Recent genome-wide association studies (GWASs) have identified a locus on chromosome 1p13 strongly associated with both plasma low-density lipoprotein cholesterol (LDL-C) and myocardial infarction (MI) in humans. Here we show through a series of studies in human cohorts and human-derived hepatocytes that a common noncoding polymorphism at the 1p13 locus, rs12740374, creates a C/EBP (CCAAT/enhancer binding protein) transcription factor binding site and alters the hepatic expression of the SORT1 gene. With small interfering RNA (siRNA) knockdown and viral overexpression in mouse liver, we demonstrate that Sort1 alters plasma LDL-C and very low-density lipoprotein (VLDL) particle levels by modulating hepatic VLDL secretion. Thus, we provide functional evidence for a novel regulatory pathway for lipoprotein metabolism and suggest that modulation of this pathway may alter risk for MI in humans. We also demonstrate that common noncoding DNA variants identified by GWASs can directly contribute to clinical phenotypes.

  • Publication

    Gene-Centric Meta-Analysis of Lipid Traits in African, East Asian and Hispanic Populations

    (Public Library of Science, 2012) Elbers, Clara C.; Guo, Yiran; Tragante, Vinicius; van Iperen, Erik P. A.; Lanktree, Matthew B.; Castillo, Berta Almoguera; Chen, Fang; Yanek, Lisa R.; Wojczynski, Mary K.; Li, Yun R.; Ferwerda, Bart; Ballantyne, Christie M.; Buxbaum, Sarah G.; Chen, Yii-Der Ida; Chen, Wei-Min; Cupples, L. Adrienne; Cushman, Mary; Duan, Yanan; Duggan, David; Evans, Michele K.; Fernandes, Jyotika K.; Fornage, Myriam; Garcia, Melissa; Garvey, W. Timothy; Glazer, Nicole; Gomez, Felicia; Harris, Tamara B.; Halder, Indrani; Howard, Virginia J.; Keller, Margaux F.; Kamboh, M. Ilyas; Kooperberg, Charles; Kritchevsky, Stephen B.; LaCroix, Andrea; Liu, Kiang; Liu, Yongmei; Musunuru, Kiran; Newman, Anne B.; Onland-Moret, N. Charlotte; Ordovas, Jose; Peter, Inga; Post, Wendy; Redline, Susan; Reis, Steven E.; Saxena, Richa; Schreiner, Pamela J.; Volcik, Kelly A.; Wang, Xingbin; Yusuf, Salim; Zonderland, Alan B.; Anand, Sonia S.; Becker, Diane M.; Psaty, Bruce; Rader, Daniel J.; Reiner, Alex P.; Rich, Stephen S.; Rotter, Jerome I.; Sale, Michèle M.; Tsai, Michael Y.; Borecki, Ingrid B.; Hegele, Robert A.; Kathiresan, Sekar; Nalls, Michael A.; Taylor, Herman A.; Hakonarson, Hakon; Sivapalaratnam, Suthesh; Asselbergs, Folkert W.; Drenos, Fotios; Wilson, James G.; Keating, Brendan J.

    Meta-analyses of European populations has successfully identified genetic variants in over 100 loci associated with lipid levels, but our knowledge in other ethnicities remains limited. To address this, we performed dense genotyping of ∼2,000 candidate genes in 7,657 African Americans, 1,315 Hispanics and 841 East Asians, using the IBC array, a custom ∼50,000 SNP genotyping array. Meta-analyses confirmed 16 lipid loci previously established in European populations at genome-wide significance level, and found multiple independent association signals within these lipid loci. Initial discovery and in silico follow-up in 7,000 additional African American samples, confirmed two novel loci: rs5030359 within ICAM1 is associated with total cholesterol (TC) and low-density lipoprotein cholesterol (LDL-C) ((p = 8.8×10^{−7} and p = 1.5×10^{−6}) respectively) and a nonsense mutation rs3211938 within CD36 is associated with high-density lipoprotein cholesterol (HDL-C) levels ((p = 13.5×10^{−12})). The rs3211938-G allele, which is nearly absent in European and Asian populations, has been previously found to be associated with CD36 deficiency and shows a signature of selection in Africans and African Americans. Finally, we have evaluated the effect of SNPs established in European populations on lipid levels in multi-ethnic populations and show that most known lipid association signals span across ethnicities. However, differences between populations, especially differences in allele frequency, can be leveraged to identify novel signals, as shown by the discovery of ICAM1 and CD36 in the current report.

  • Publication

    A TALEN Genome-Editing System for Generating Human Stem Cell-Based Disease Models

    (Elsevier BV, 2013) Ding, Qiurong; Lee, Youn-Kyoung; Schaefer, Esperance; Peters, Derek T.; Veres, Adrian; Kim, Kevin; Kuperwasser, Nicolas; Motola, Daniel L; Meissner, Torsten; Hendriks, William; Trevisan, Marta; Gupta, Rajat; Moisan, Annie; Banks, Eric; Friesen, Max; Schinzel, Robert T.; Xia, Fang; Tang, Alexander; Xia, Yulei; Figueroa, Emmanuel; Wann, Amy; Ahfeldt, Tim; Daheron, Laurence; Zhang, Feng; Rubin, Lee; Peng, Lee F; Chung, Raymond; Musunuru, Kiran; Cowan, Chad

    Transcription activator-like effector nucleases (TALENs) are a new class of engineered nucleases that are easier to design to cleave at desired sites in a genome than previous types of nucleases. We report here the use of TALENs to rapidly and efficiently generate mutant alleles of 15 genes in cultured somatic cells or human pluripotent stem cells, the latter for which we differentiated both the targeted lines and isogenic control lines into various metabolic cell types. We demonstrate cell-autonomous phenotypes directly linked to disease—dyslipidemia, insulin resistance, hypoglycemia, lipodystrophy, motor-neuron death, and hepatitis C infection. We found little evidence of TALEN off-target effects, but each clonal line nevertheless harbors a significant number of unique mutations. Given the speed and ease with which we were able to derive and characterize these cell lines, we anticipate TALEN-mediated genome editing of human cells becoming a mainstay for the investigation of human biology and disease.

  • Publication

    Enhanced Efficiency of Human Pluripotent Stem Cell Genome Editing through Replacing TALENs with CRISPRs

    (Elsevier BV, 2013) Ding, Qiurong; Regan, Stephanie; Xia, Yulei; Oostrom, Leoníe A.; Cowan, Chad; Musunuru, Kiran
  • Publication

    Programming human pluripotent stem cells into white and brown adipocytes

    (Nature Publishing Group, 2012) Ahfeldt, Tim; Schinzel, Robert T.; Lee, Youn-Kyoung; Hendrickson, David Gillis; Kaplan, Adam; Lum, David H.; Camahort, Raymond; Xia, Fang; Shay, Jennifer B.; Rhee, Eugene; Clish, Clary B.; Deo, Rahul C.; Shen, Tony; Lau, Frank; Cowley, Alicia; Mowrer, Greg; Al-Siddiqi, Heba; Nahrendorf, Matthias; Musunuru, Kiran; Gerszten, Robert; Rinn, John; Cowan, Chad

    The utility of human pluripotent stem cells is dependent on efficient differentiation protocols that convert these cells into relevant adult cell types. Here we report the robust and efficient differentiation of human pluripotent stem cells into white or brown adipocytes. We found that inducible expression of PPARG2 alone or combined with CEBPB and/or PRDM16 in mesenchymal progenitor cells derived from pluripotent stem cells programmed their development towards a white or brown adipocyte cell fate with efficiencies of 85%–90%. These adipocytes retained their identity independent of transgene expression, could be maintained in culture for several weeks, expressed mature markers and had mature functional properties such as lipid catabolism and insulin-responsiveness. When transplanted into mice, the programmed cells gave rise to ectopic fat pads with the morphological and functional characteristics of white or brown adipose tissue. These results indicate that the cells could be used to faithfully model human disease.

  • Publication

    Mapping Novel Pathways in Cardiovascular Disease Using eQTL Data: The Past, Present, and Future of Gene Expression Analysis

    (Frontiers Media S.A., 2013) Gupta, Rajat M.; Musunuru, Kiran

    Genome-wide association studies (GWAS) have identified genetic variants associated with numerous cardiovascular and metabolic diseases. Newly identified polymorphisms associated with myocardial infarction, dyslipidemia, hypertension, diabetes, and insulin resistance suggest novel mechanistic pathways that underlie these and other complex diseases. Working out the connections between the polymorphisms identified in GWAS and their biological mechanisms has been especially challenging given the number of non-coding variants identified thus far. In this review, we discuss the utility of expression quantitative trait locus (eQTL) databases in the study of non-coding variants with respect to cardiovascular and metabolic phenotypes. Recent successes in using eQTL data to link variants with functional candidate genes will be reviewed, and the shortcomings of this approach will be outlined. Finally, we discuss the emerging next generation of eQTL studies that take advantage of the ability to generate induced pluripotent stem cell lines from population cohorts.

  • Publication

    Generation of Multipotent Lung and Airway Progenitors from Mouse ESCs and Patient-Specific Cystic Fibrosis iPSCs

    (Elsevier BV, 2012) Mou, Hongmei; Zhao, Rui; Sherwood, Richard; Ahfeldt, Tim; Lapey, Allen; Wain, John Charles; Sicilian, Leonard; Izvolsky, Konstantin; Lau, Frank; Musunuru, Kiran; Cowan, Chad; Rajagopal, Jayaraj

    Deriving lung progenitors from patient-specific pluripotent cells is a key step in producing differentiated lung epithelium for disease modeling and transplantation. By mimicking the signaling events that occur during mouse lung development, we generated murine lung progenitors in a series of discrete steps. Definitive endoderm derived from mouse embryonic stem cells (ESCs) was converted into foregut endoderm, then into replicating Nkx2.1+ lung endoderm, and finally into multipotent embryonic lung progenitor and airway progenitor cells. We demonstrated that precisely-timed BMP, FGF, and WNT signaling are required for NKX2.1 induction. Mouse ESC-derived Nkx2.1+ progenitor cells formed respiratory epithelium (tracheospheres) when transplanted subcutaneously into mice. We then adapted this strategy to produce disease-specific lung progenitor cells from human Cystic Fibrosis induced pluripotent stem cells (iPSCs), creating a platform for dissecting human lung disease. These disease-specific human lung progenitors formed respiratory epithelium when subcutaneously engrafted into immunodeficient mice.