Author:
Grancharova Tanya,Gerbin Kaytlyn A.,Rosenberg Alexander B.,Roco Charles M.,Arakaki Joy E.,DeLizo Colette M.,Dinh Stephanie Q.,Donovan-Maiye Rory M.,Hirano Matthew,Nelson Angelique M.,Tang Joyce,Theriot Julie A.,Yan Calysta,Menon Vilas,Palecek Sean P.,Seelig Georg,Gunawardane Ruwanthi N.
Abstract
AbstractWe performed a comprehensive analysis of the transcriptional changes occurring during human induced pluripotent stem cell (hiPSC) differentiation to cardiomyocytes. Using single cell RNA-seq, we sequenced > 20,000 single cells from 55 independent samples representing two differentiation protocols and multiple hiPSC lines. Samples included experimental replicates ranging from undifferentiated hiPSCs to mixed populations of cells at D90 post-differentiation. Differentiated cell populations clustered by time point, with differential expression analysis revealing markers of cardiomyocyte differentiation and maturation changing from D12 to D90. We next performed a complementary cluster-independent sparse regression analysis to identify and rank genes that best assigned cells to differentiation time points. The two highest ranked genes between D12 and D24 (MYH7 and MYH6) resulted in an accuracy of 0.84, and the three highest ranked genes between D24 and D90 (A2M, H19, IGF2) resulted in an accuracy of 0.94, revealing that low dimensional gene features can identify differentiation or maturation stages in differentiating cardiomyocytes. Expression levels of select genes were validated using RNA FISH. Finally, we interrogated differences in cardiac gene expression resulting from two differentiation protocols, experimental replicates, and three hiPSC lines in the WTC-11 background to identify sources of variation across these experimental variables.
Funder
Howard Hughes Medical Institute
Washington Research Foundation
Common Fund
Publisher
Springer Science and Business Media LLC
Cited by
39 articles.
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