Guangdong Cardiovascular Institute, Guangdong Provincial People's Hospital (Guangdong Academy of Medical Sciences), Southern Medical University, Guangzhou, China.
CAS Key Laboratory of Regenerative Biology, Center for Cell Lineage and Development, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China.
Life Sci Alliance. 2023 Aug 21;6(11). doi: 10.26508/lsa.202302121. Print 2023 Nov.
Loss of c-JUN leads to early mouse embryonic death, possibly because of a failure to develop a normal cardiac system. How c-JUN regulates human cardiomyocyte cell fate remains unknown. Here, we used the in vitro differentiation of human pluripotent stem cells into cardiomyocytes to study the role of c-JUN. Surprisingly, the knockout of c-JUN improved cardiomyocyte generation, as determined by the number of TNNT2+ cells. ATAC-seq data showed that the c-JUN defect led to increased chromatin accessibility on critical regulatory elements related to cardiomyocyte development. ChIP-seq data showed that the knockout c-JUN increased RBBP5 and SETD1B expression, leading to improved H3K4me3 deposition on key genes that regulate cardiogenesis. The c-JUN KO phenotype could be copied using the histone demethylase inhibitor CPI-455, which also up-regulated H3K4me3 levels and increased cardiomyocyte generation. Single-cell RNA-seq data defined three cell branches, and knockout c-JUN activated more regulons that are related to cardiogenesis. In summary, our data demonstrated that c-JUN could regulate cardiomyocyte cell fate by modulating H3K4me3 modification and chromatin accessibility and shed light on how c-JUN regulates heart development in humans.
c-JUN 缺失会导致早期小鼠胚胎死亡,可能是因为未能正常发育出心脏系统。c-JUN 如何调节人类心肌细胞命运仍不清楚。在这里,我们使用体外分化人类多能干细胞为心肌细胞来研究 c-JUN 的作用。令人惊讶的是,c-JUN 的敲除会增加 TNNT2+细胞的数量,从而改善心肌细胞的生成。ATAC-seq 数据表明,c-JUN 缺陷导致与心肌细胞发育相关的关键调控元件的染色质可及性增加。ChIP-seq 数据表明,c-JUN 敲除会增加 RBBP5 和 SETD1B 的表达,从而导致调节心脏发生的关键基因上的 H3K4me3 沉积增加。组蛋白去甲基化酶抑制剂 CPI-455 也可以复制 c-JUN KO 表型,该抑制剂还上调了 H3K4me3 水平并增加了心肌细胞的生成。单细胞 RNA-seq 数据定义了三个细胞分支,c-JUN 敲除激活了更多与心脏发生相关的调控网络。总之,我们的数据表明,c-JUN 可以通过调节 H3K4me3 修饰和染色质可及性来调节心肌细胞命运,并揭示了 c-JUN 如何在人类中调节心脏发育。