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JAK-STAT 通路的上调促进人胚胎干细胞来源的心肌细胞的成熟。

Upregulation of the JAK-STAT pathway promotes maturation of human embryonic stem cell-derived cardiomyocytes.

机构信息

Disease Modeling and Therapeutics Laboratory, A(∗)STAR Institute of Molecular and Cell Biology, 61 Biopolis Drive Proteos, Singapore 138673, Singapore; Department of Biological Sciences, National University of Singapore, Singapore 117543, Singapore.

Disease Modeling and Therapeutics Laboratory, A(∗)STAR Institute of Molecular and Cell Biology, 61 Biopolis Drive Proteos, Singapore 138673, Singapore.

出版信息

Stem Cell Reports. 2021 Dec 14;16(12):2928-2941. doi: 10.1016/j.stemcr.2021.10.009. Epub 2021 Nov 11.

Abstract

The immature characteristics and metabolic phenotypes of human pluripotent stem cell-derived cardiomyocytes (hPSC-CMs) restrict their applications for disease modeling, drug discovery, and cell-based therapy. Leveraging on the metabolic shifts from glycolysis to fatty acid oxidation as CMs mature, a human hexokinase1-GFP metabolic reporter cell line (H7 HK1-GFP) was generated to facilitate the isolation of fetal or more matured hPSC-CMs. RNA sequencing of fetal versus more matured CMs uncovered a potential role of interferon-signaling pathway in regulating CM maturation. Indeed, IFN-γ-treated CMs resulted in an upregulation of the JAK-STAT pathway, which was found to be associated with increased expression of CM maturation genes, shift from MYH6 to MYH7 expression, and improved sarcomeric structure. Functionally, IFN-γ-treated CMs exhibited a more matured electrophysiological profile, such as increased calcium dynamics and action potential upstroke velocity, demonstrated through calcium imaging and MEA. Expectedly, the functional improvements were nullified with a JAK-STAT inhibitor, ruxolitinib.

摘要

人多能干细胞衍生的心肌细胞(hPSC-CMs)不成熟的特征和代谢表型限制了它们在疾病建模、药物发现和基于细胞的治疗中的应用。利用心肌成熟过程中从糖酵解向脂肪酸氧化的代谢转变,生成了一种人己糖激酶 1-GFP 代谢报告细胞系(H7 HK1-GFP),以促进胎龄或更成熟的 hPSC-CMs 的分离。对胎龄和更成熟的 CMs 的 RNA 测序揭示了干扰素信号通路在调节 CM 成熟中的潜在作用。事实上,IFN-γ 处理的 CMs 导致 JAK-STAT 通路的上调,这与 CM 成熟基因的表达增加、从 MYH6 到 MYH7 表达的转变以及肌节结构的改善有关。在功能上,IFN-γ 处理的 CMs 表现出更成熟的电生理特征,例如钙动力学和动作电位上升速度的增加,这可以通过钙成像和 MEA 来证明。预期,JAK-STAT 抑制剂鲁索利替尼可消除这些功能改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4135/8693666/b38e69c85be2/gr1.jpg

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