Harnessing the ubiquitin proteasome system as a key player in stem cell biology

IF 5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
BioFactors Pub Date : 2025-01-22 DOI:10.1002/biof.2157
Hind Atta, Dina H. Kassem, Mohamed M. Kamal, Nadia M. Hamdy
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引用次数: 0

Abstract

Intracellular proteins take part in almost every body function; thus, protein homeostasis is of utmost importance. The ubiquitin proteasome system (UPS) has a fundamental role in protein homeostasis. Its main role is to selectively eradicate impaired or misfolded proteins, thus halting any damage that could arise from the accumulation of these malfunctioning proteins. Proteasomes have a critical role in controlling protein homeostasis in all cell types, including stem cells. We will discuss the role of UPS enzymes as well as the 26S proteasome complex in stem cell biology from several angles. First, we shall overview common trends of proteasomal activity and gene expression of different proteasomal subunits and UPS enzymes upon passaging and differentiation of stem cells toward various cell lineages. Second, we shall explore the effect of modulating proteasomal activity in stem cells and navigate through the interrelation between proteasomes' activity and various proteasome-related transcription factors. Third, we will shed light on curated microRNAs and long non-coding RNAs using various bioinformatics tools that might have a possible role in regulating UPS in stem cells and possibly, upon manipulation, can enhance the differentiation process into different lineages and/or delay senescence upon cell passaging. This will help to decipher the role played by individual UPS enzymes and subunits as well as various interrelated molecular mediators in stem cells' maintenance and/or differentiation and open new avenues in stem cell research. This can ultimately provide a leap toward developing novel therapeutic interventions related to proteasome dysregulation.

Abstract Image

利用泛素蛋白酶体系统在干细胞生物学中的关键作用。
细胞内蛋白质几乎参与所有的身体功能;因此,蛋白质稳态是至关重要的。泛素蛋白酶体系统(UPS)在蛋白质稳态中起着重要作用。它的主要作用是选择性地清除受损或错误折叠的蛋白质,从而阻止可能由这些功能失调的蛋白质积累引起的任何损害。蛋白酶体在控制包括干细胞在内的所有细胞类型的蛋白质稳态中起着关键作用。我们将从多个角度讨论UPS酶以及26S蛋白酶体复合物在干细胞生物学中的作用。首先,我们将概述不同蛋白酶体亚基和UPS酶在干细胞传代和向不同细胞系分化过程中蛋白酶体活性和基因表达的共同趋势。其次,我们将探索在干细胞中调节蛋白酶体活性的作用,并通过蛋白酶体活性与各种蛋白酶体相关转录因子之间的相互关系进行导航。第三,我们将利用各种生物信息学工具阐明策划的microrna和长链非编码rna,这些rna可能在调节干细胞中的UPS中发挥作用,并且可能在操纵后,可以增强分化过程到不同的谱系和/或延迟细胞传代时的衰老。这将有助于破译单个UPS酶和亚基以及各种相关分子介质在干细胞维持和/或分化中所起的作用,并为干细胞研究开辟新的途径。这最终可以为开发与蛋白酶体失调相关的新型治疗干预提供一个飞跃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BioFactors
BioFactors 生物-内分泌学与代谢
CiteScore
11.50
自引率
3.30%
发文量
96
审稿时长
6-12 weeks
期刊介绍: BioFactors, a journal of the International Union of Biochemistry and Molecular Biology, is devoted to the rapid publication of highly significant original research articles and reviews in experimental biology in health and disease. The word “biofactors” refers to the many compounds that regulate biological functions. Biological factors comprise many molecules produced or modified by living organisms, and present in many essential systems like the blood, the nervous or immunological systems. A non-exhaustive list of biological factors includes neurotransmitters, cytokines, chemokines, hormones, coagulation factors, transcription factors, signaling molecules, receptor ligands and many more. In the group of biofactors we can accommodate several classical molecules not synthetized in the body such as vitamins, micronutrients or essential trace elements. In keeping with this unified view of biochemistry, BioFactors publishes research dealing with the identification of new substances and the elucidation of their functions at the biophysical, biochemical, cellular and human level as well as studies revealing novel functions of already known biofactors. The journal encourages the submission of studies that use biochemistry, biophysics, cell and molecular biology and/or cell signaling approaches.
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