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为最重要的部分提供最佳保障:维持干细胞和祖细胞中蛋白质组的纯净状态。

The Best for the Most Important: Maintaining a Pristine Proteome in Stem and Progenitor Cells.

作者信息

Aktas Bertal H, Upcin Berin, Henke Erik, Padmasekar Manju, Qin Xuebin, Ergün Süleyman

机构信息

Division of Hematology, Department of Medicine, Brigham and Women's Hospital and Harvard Medical School, 75 Francis Street, Boston, MA 02115, USA.

Institute of Anatomy and Cell Biology, Julius-Maximilians Universität Würzburg, Koellikerstrasse 6, Würzburg, 97070 Bayern, Germany.

出版信息

Stem Cells Int. 2019 May 2;2019:1608787. doi: 10.1155/2019/1608787. eCollection 2019.

Abstract

Pluripotent stem cells give rise to reproductively enabled offsprings by generating progressively lineage-restricted multipotent stem cells that would differentiate into lineage-committed stem and progenitor cells. These lineage-committed stem and progenitor cells give rise to all adult tissues and organs. Adult stem and progenitor cells are generated as part of the developmental program and play critical roles in tissue and organ maintenance and/or regeneration. The ability of pluripotent stem cells to self-renew, maintain pluripotency, and differentiate into a multicellular organism is highly dependent on sensing and integrating extracellular and extraorganismal cues. Proteins perform and integrate almost all cellular functions including signal transduction, regulation of gene expression, metabolism, and cell division and death. Therefore, maintenance of an appropriate mix of correctly folded proteins, a pristine proteome, is essential for proper stem cell function. The stem cells' proteome must be pristine because unfolded, misfolded, or otherwise damaged proteins would interfere with unlimited self-renewal, maintenance of pluripotency, differentiation into downstream lineages, and consequently with the development of properly functioning tissue and organs. Understanding how various stem cells generate and maintain a pristine proteome is therefore essential for exploiting their potential in regenerative medicine and possibly for the discovery of novel approaches for maintaining, propagating, and differentiating pluripotent, multipotent, and adult stem cells as well as induced pluripotent stem cells. In this review, we will summarize cellular networks used by various stem cells for generation and maintenance of a pristine proteome. We will also explore the coordination of these networks with one another and their integration with the gene regulatory and signaling networks.

摘要

多能干细胞通过产生逐渐受到谱系限制的多能干细胞来产生具有生殖能力的后代,这些多能干细胞会分化为谱系定向的干细胞和祖细胞。这些谱系定向的干细胞和祖细胞产生所有成体组织和器官。成体干细胞和祖细胞作为发育程序的一部分产生,并在组织和器官的维持和/或再生中发挥关键作用。多能干细胞自我更新、维持多能性以及分化为多细胞生物体的能力高度依赖于感知和整合细胞外和生物体外部的信号。蛋白质执行并整合几乎所有细胞功能,包括信号转导、基因表达调控、新陈代谢以及细胞分裂和死亡。因此,维持正确折叠的蛋白质的适当组合,即一个纯净的蛋白质组,对于干细胞的正常功能至关重要。干细胞的蛋白质组必须是纯净的,因为未折叠、错误折叠或以其他方式受损的蛋白质会干扰无限自我更新、多能性的维持、向下游谱系的分化,进而干扰正常功能组织和器官的发育。因此,了解各种干细胞如何产生和维持纯净的蛋白质组对于开发其在再生医学中的潜力以及可能发现维持、增殖和分化多能、多能和成体干细胞以及诱导多能干细胞的新方法至关重要。在这篇综述中,我们将总结各种干细胞用于产生和维持纯净蛋白质组的细胞网络。我们还将探讨这些网络之间的相互协调以及它们与基因调控和信号网络的整合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b992/6525796/6e1b6e70b38c/SCI2019-1608787.001.jpg

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