Tiwari Satish Kumar, Mandal Sudip
Developmental Genetics Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Mohali, India.
Molecular Cell and Developmental Biology Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Mohali, Mohali, India.
Front Cell Dev Biol. 2021 May 3;9:606639. doi: 10.3389/fcell.2021.606639. eCollection 2021.
Over the years, has served as a wonderful genetically tractable model system to unravel various facets of tissue-resident stem cells in their microenvironment. Studies in different stem and progenitor cell types of have led to the discovery of cell-intrinsic and extrinsic factors crucial for stem cell state and fate. Though initially touted as the ATP generating machines for carrying various cellular processes, it is now increasingly becoming clear that mitochondrial processes alone can override the cellular program of stem cells. The last few years have witnessed a surge in our understanding of mitochondria's contribution to governing different stem cell properties in their subtissular niches in . Through this review, we intend to sum up and highlight the outcome of these studies that implicate mitochondria as a central regulator of stem cell fate decisions; to find the commonalities and uniqueness associated with these regulatory mechanisms.
多年来,(原文此处缺失具体内容)一直是一个出色的遗传易处理模型系统,用于揭示组织驻留干细胞在其微环境中的各个方面。对(原文此处缺失具体内容)不同干细胞和祖细胞类型的研究,导致发现了对干细胞状态和命运至关重要的细胞内在和外在因素。尽管线粒体最初被吹捧为进行各种细胞过程的ATP产生机器,但现在越来越清楚的是,仅线粒体过程就可以超越干细胞的细胞程序。在过去几年中,我们对线粒体在(原文此处缺失具体内容)的亚组织微环境中对控制不同干细胞特性的贡献的理解有了激增。通过这篇综述,我们打算总结并突出这些(原文此处缺失具体内容)研究的结果,这些结果表明线粒体是干细胞命运决定的核心调节因子;找出与这些调节机制相关的共性和独特性。