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未折叠蛋白反应的 PERK 分支保护人多能干细胞的蛋白质动态平衡和中胚层特化。

The PERK Branch of the Unfolded Protein Response Safeguards Protein Homeostasis and Mesendoderm Specification of Human Pluripotent Stem Cells.

机构信息

Advanced Medical Technology Center, Zhongshan School of Medicine and the First Affiliated Hospital, Sun Yat-Sen University, Guangzhou, 510080, P. R. China.

Key Laboratory for Stem Cells and Tissue Engineering, Sun Yat-Sen University, Ministry of Education, Guangzhou, 510080, P. R. China.

出版信息

Adv Sci (Weinh). 2023 Dec;10(35):e2303799. doi: 10.1002/advs.202303799. Epub 2023 Oct 27.

Abstract

Cardiac development involves large-scale rearrangements of the proteome. How the developing cardiac cells maintain the integrity of the proteome during the rapid lineage transition remains unclear. Here it is shown that proteotoxic stress visualized by the misfolded and/or aggregated proteins appears during early cardiac differentiation of human pluripotent stem cells and is resolved by activation of the PERK branch of unfolded protein response (UPR). PERK depletion increases misfolded and/or aggregated protein accumulation, leading to pluripotency exit defect and impaired mesendoderm specification of human pluripotent stem cells. Mechanistically, it is found that PERK safeguards mesendoderm specification through its conserved downstream effector ATF4, which subsequently activates a novel transcriptional target WARS1, to cope with the differentiation-induced proteotoxic stress. The results indicate that protein quality control represents a previously unrecognized core component of the cardiogenic regulatory network. Broadly, these findings provide a framework for understanding how UPR is integrated into the developmental program by activating the PERK-ATF4-WARS1 axis.

摘要

心脏发育涉及蛋白质组的大规模重排。在快速谱系过渡过程中,发育中的心肌细胞如何保持蛋白质组的完整性尚不清楚。本文显示,人多能干细胞早期心脏分化过程中会出现蛋白质错误折叠和/或聚集所导致的蛋白毒性应激,并通过未折叠蛋白反应(UPR)PERK 分支的激活得到解决。PERK 耗竭会增加错误折叠和/或聚集蛋白的积累,导致多能性退出缺陷和人多能干细胞中中胚层指定受损。在机制上,研究发现 PERK 通过其保守的下游效应物 ATF4 来保护中胚层指定,随后激活一个新的转录靶标 WARS1,以应对分化诱导的蛋白毒性应激。研究结果表明,蛋白质质量控制代表了心脏发生调控网络中以前未被认识到的核心组成部分。广泛地说,这些发现为理解 UPR 如何通过激活 PERK-ATF4-WARS1 轴整合到发育程序中提供了一个框架。

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