Person: Sankaran, Vijay
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Publication Altered translation of GATA1 in Diamond-Blackfan anemia
(2014) Ludwig, Leif S.; Gazda, Hanna; Eng, Jennifer C.; Eichhorn, Stephen W.; Thiru, Prathapan; Ghazvinian, Roxanne; George, Tracy I.; Gotlib, Jason R.; Beggs, Alan; Sieff, Colin; Lodish, Harvey F.; Lander, Eric; Sankaran, VijayRibosomal protein haploinsufficiency occurs in diverse human diseases including Diamond-Blackfan anemia (DBA),1,2 congenital asplenia,3 and T-cell leukemia.4 Yet how mutations in such ubiquitously expressed proteins result in cell-type and tissue specific defects remains a mystery.5 Here, we show that GATA1 mutations that reduce full-length protein levels of this critical hematopoietic transcription factor can cause DBA in rare instances. We show that ribosomal protein haploinsufficiency, the more common cause of DBA, can similarly reduce translation of GATA1 mRNA - a phenomenon that appears to result from this mRNA having a higher threshold for initiation of translation. In primary hematopoietic cells from patients with RPS19 mutations, a transcriptional signature of GATA1 target genes is globally and specifically reduced, confirming that the activity, but not the mRNA level, of GATA1 is reduced in DBA patients with ribosomal protein mutations. The defective hematopoiesis observed in DBA patients with ribosomal protein haploinsufficiency can be at least partially overcome by increasing GATA1 protein levels. Our results provide a paradigm by which selective defects in translation due to mutations in ubiquitous ribosomal proteins can result in human disease.
Publication Massively parallel single-cell mitochondrial DNA genotyping and chromatin profiling
(Springer Science and Business Media LLC, 2020-08-12) Lareau, Caleb A.; Ludwig, Leif S.; Muus, Christoph; Gohil, Satyen H.; Zhao, Tongtong; Chiang, Zachary; Pelka, Karin; Verboon, Jeffrey M.; Luo, Wendy; Christian, Elena; Rosebrock, Daniel; Getz, Gad; Boland, Genevieve M.; Chen, Fei; Buenrostro, Jason D.; Hacohen, Nir; Wu, Catherine J.; Aryee, Martin J.; Regev, Aviv; Sankaran, VijayPublication Interrogation of human hematopoiesis at single-cell and single-variant resolution
(Springer Science and Business Media LLC, 2019-03-11) Ulirsch, Jacob; Lareau, Caleb A.; Bao, Erik L.; Ludwig, Leif S.; Guo, Michael H.; Benner, Christian; Satpathy, Ansuman T.; Kartha, Vinay; Salem, Rany M.; Hirschhorn, Joel; Finucane, Hilary; Aryee, Martin; Buenrostro, Jason; Sankaran, VijayWidespread linkage disequilibrium and incomplete annotation of cell-to-cell state variation represent substantial challenges to elucidating mechanisms of trait-associated genetic variation. Here, we perform genetic fine-mapping for blood cell traits in the UK Biobank to identify putative causal variants. These variants are enriched in genes encoding for proteins in trait-relevant biological pathways and in accessible chromatin of hematopoietic progenitors. For regulatory variants, we explore patterns of developmental enhancer activity, predict molecular mechanisms, and identify likely target genes. In several instances, we localize multiple independent variants to the same regulatory element or gene. We further observe that variants with pleiotropic effects preferentially act in common progenitor populations to direct the production of distinct lineages. Finally, we leverage fine-mapped variants in conjunction with continuous epigenomic annotations to identify trait-cell type enrichments within closely related populations and in single cells. Our study provides a comprehensive framework for single-variant and single-cell analyses of genetic associations.