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高重复和开源的人诱导多能干细胞来源的心肌细胞分化数据集的基因表达变化的综合分析。

A comprehensive analysis of gene expression changes in a high replicate and open-source dataset of differentiating hiPSC-derived cardiomyocytes.

机构信息

Allen Institute for Cell Science, Seattle, WA, USA.

Department of Electrical & Computer Engineering, University of Washington, Seattle, WA, USA.

出版信息

Sci Rep. 2021 Aug 4;11(1):15845. doi: 10.1038/s41598-021-94732-1.

Abstract

We 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.

摘要

我们对人类诱导多能干细胞(hiPSC)分化为心肌细胞过程中的转录变化进行了全面分析。使用单细胞 RNA-seq,我们对来自 55 个独立样本的超过 20000 个单细胞进行了测序,这些样本代表了两种分化方案和多个 hiPSC 系。样本包括从未分化的 hiPSC 到分化后第 90 天的混合细胞群的实验重复。分化细胞群按时间点聚类,差异表达分析显示心肌细胞分化和成熟的标志物从第 12 天到第 90 天发生变化。接下来,我们进行了补充的无聚类稀疏回归分析,以识别和排序最能将细胞分配到分化时间点的基因。第 12 天和第 24 天之间排名最高的两个基因(MYH7 和 MYH6)的准确率为 0.84,第 24 天和第 90 天之间排名最高的三个基因(A2M、H19、IGF2)的准确率为 0.94,表明低维基因特征可以识别分化或成熟阶段的分化心肌细胞。使用 RNA FISH 验证了选定基因的表达水平。最后,我们研究了 WTC-11 背景下两种分化方案、实验重复和三个 hiPSC 系的心脏基因表达差异,以确定这些实验变量之间的变异来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c983/8338992/efabb545a043/41598_2021_94732_Fig1_HTML.jpg

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