Center for iPS Cell Research and Application, Kyoto University, Kyoto, Japan.
Gladstone Institute of Cardiovascular Disease, San Francisco, California, United States of America.
PLoS Genet. 2021 May 25;17(5):e1009587. doi: 10.1371/journal.pgen.1009587. eCollection 2021 May.
Human pluripotent stem cells (PSCs) express human endogenous retrovirus type-H (HERV-H), which exists as more than a thousand copies on the human genome and frequently produces chimeric transcripts as long-non-coding RNAs (lncRNAs) fused with downstream neighbor genes. Previous studies showed that HERV-H expression is required for the maintenance of PSC identity, and aberrant HERV-H expression attenuates neural differentiation potentials, however, little is known about the actual of function of HERV-H. In this study, we focused on ESRG, which is known as a PSC-related HERV-H-driven lncRNA. The global transcriptome data of various tissues and cell lines and quantitative expression analysis of PSCs showed that ESRG expression is much higher than other HERV-Hs and tightly silenced after differentiation. However, the loss of function by the complete excision of the entire ESRG gene body using a CRISPR/Cas9 platform revealed that ESRG is dispensable for the maintenance of the primed and naïve pluripotent states. The loss of ESRG hardly affected the global gene expression of PSCs or the differentiation potential toward trilineage. Differentiated cells derived from ESRG-deficient PSCs retained the potential to be reprogrammed into induced PSCs (iPSCs) by the forced expression of OCT3/4, SOX2, and KLF4. In conclusion, ESRG is dispensable for the maintenance and recapturing of human pluripotency.
人类多能干细胞 (PSCs) 表达人类内源性逆转录病毒类型-H (HERV-H),其在人类基因组上存在超过一千个拷贝,并经常产生与下游邻近基因融合的长非编码 RNA (lncRNA) 嵌合转录本。先前的研究表明,HERV-H 的表达对于维持 PSC 特性是必需的,而异常的 HERV-H 表达会降低神经分化潜力,然而,关于 HERV-H 的实际功能知之甚少。在这项研究中,我们专注于 ESRG,它是一种已知与 PSC 相关的由 HERV-H 驱动的 lncRNA。各种组织和细胞系的全转录组数据和 PSCs 的定量表达分析表明,ESRG 的表达远高于其他 HERV-Hs,并且在分化后被紧密沉默。然而,使用 CRISPR/Cas9 平台完全切除整个 ESRG 基因体导致的功能丧失表明,ESRG 对于维持原始和幼稚多能状态不是必需的。ESRG 的缺失几乎不会影响 PSCs 的全局基因表达或向三系分化的潜力。源自 ESRG 缺陷型 PSCs 的分化细胞通过强制表达 OCT3/4、SOX2 和 KLF4 保留了被重新编程为诱导性 PSCs (iPSCs) 的潜力。总之,ESRG 对于维持和重新捕获人类多能性不是必需的。