超越伴侣:UCS蛋白作为肌球蛋白介导的细胞过程的调节剂出现。

Q1 Biochemistry, Genetics and Molecular Biology Sub-cellular biochemistry Pub Date : 2023-01-01 DOI:10.1007/978-3-031-14740-1_7
Odutayo O Odunuga, Andres F Oberhauser
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引用次数: 0

摘要

UCS (UNC-45/CRO1/She4p)蛋白家族已经成为肌球蛋白折叠、组装和功能的特异性伴侣蛋白。UCS蛋白参与各种肌球蛋白依赖的细胞过程,包括肌原纤维组织和肌肉功能、细胞分化、横纹肌发育、细胞分裂和内吞作用。编码UCS蛋白的基因突变会导致肌球蛋白依赖性细胞过程的严重缺陷。含有n端四肽重复(TPR)结构域的UCS蛋白被称为UNC-45。脊椎动物通常具有两种UNC-45的变体,普遍存在的通用细胞UNC-45 (UNC-45A)和横纹肌UNC-45 (UNC-45B),后者仅在骨骼肌和心肌中表达。除了UNC-45中的TPR结构域外,UCS蛋白由几个不规则的armadillo (ARM)重复序列组成,这些重复序列被组织成一个中心结构域、一个颈部区域和作为陪伴模块的规范c端UCS结构域。有或没有TPR, UCS蛋白形成线性低聚物,作为介导肌球蛋白折叠、组织成肌原纤维、修复和运动性的支架。本章回顾了这些蛋白质的新功能,重点介绍了UNC-45在蛋白质和潜在基因水平上作为肌球蛋白折叠、组装和功能的专用伴侣。最近的实验证据有力地支持了UNC-45作为肌凝蛋白的绝对调控因子,其每个结构域在肌凝蛋白的折叠、组装和功能中发挥着不同但互补的作用,并招募Hsp90作为共同伴侣来优化关键步骤。越来越清楚的是,UNC-45也调节参与肌球蛋白依赖性细胞过程的几个基因的转录。
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Beyond Chaperoning: UCS Proteins Emerge as Regulators of Myosin-Mediated Cellular Processes.

The UCS (UNC-45/CRO1/She4p) family of proteins has emerged as chaperones specific for the folding, assembly, and function of myosin. UCS proteins participate in various myosin-dependent cellular processes including myofibril organization and muscle functions, cell differentiation, striated muscle development, cytokinesis, and endocytosis. Mutations in the genes that code for UCS proteins cause serious defects in myosin-dependent cellular processes. UCS proteins that contain an N-terminal tetratricopeptide repeat (TPR) domain are called UNC-45. Vertebrates usually possess two variants of UNC-45, the ubiquitous general-cell UNC-45 (UNC-45A) and the striated muscle UNC-45 (UNC-45B), which is exclusively expressed in skeletal and cardiac muscles. Except for the TPR domain in UNC-45, UCS proteins comprise of several irregular armadillo (ARM) repeats that are organized into a central domain, a neck region, and the canonical C-terminal UCS domain that functions as the chaperoning module. With or without TPR, UCS proteins form linear oligomers that serve as scaffolds that mediate myosin folding, organization into myofibrils, repair, and motility. This chapter reviews emerging functions of these proteins with a focus on UNC-45 as a dedicated chaperone for folding, assembly, and function of myosin at protein and potentially gene levels. Recent experimental evidences strongly support UNC-45 as an absolute regulator of myosin, with each domain of the chaperone playing different but complementary roles during the folding, assembly, and function of myosin, as well as recruiting Hsp90 as a co-chaperone to optimize key steps. It is becoming increasingly clear that UNC-45 also regulates the transcription of several genes involved in myosin-dependent cellular processes.

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来源期刊
Sub-cellular biochemistry
Sub-cellular biochemistry Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
5.90
自引率
0.00%
发文量
33
期刊介绍: The book series SUBCELLULAR BIOCHEMISTRY is a renowned and well recognized forum for disseminating advances of emerging topics in Cell Biology and related subjects. All volumes are edited by established scientists and the individual chapters are written by experts on the relevant topic. The individual chapters of each volume are fully citable and indexed in Medline/Pubmed to ensure maximum visibility of the work.
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