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Structural and Functional Insights into Small Glutamine-Rich Tetratricopeptide Repeat Protein Alpha

机译:对富含谷氨酰胺的四肽重复序列小蛋白α的结构和功能分析

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摘要

The small glutamine-rich, tetratricopeptide repeat-containing protein alpha (SGTA) is an emerging player in the quality control of secretory and membrane proteins mislocalized to the cytosol, with established roles in tail-anchored (TA) membrane protein biogenesis. SGTA consists of three structural domains with individual functions, an N-terminal dimerization domain that assists protein sorting pathways, a central tetratricopeptide repeat (TPR) domain that mediates interactions with heat-shock proteins, proteasomal, and hormonal receptors, and viral proteins, and a C-terminal glutamine rich region that binds hydrophobic substrates. SGTA has been linked to viral lifecycles and hormone receptor signaling, with implications in the pathogenesis of various disease states. Thus far, a range of biophysical techniques have been employed to characterize SGTA structure in some detail, and to investigate its interactions with binding partners in different biological contexts. A complete description of SGTA structure, together with further investigation into its function as a co-chaperone involved quality control, could provide us with useful insights into its role in maintaining cellular proteostasis, and broaden our understanding of mechanisms underlying associated pathologies. This review describes how some structural features of SGTA have been elucidated, and what this has uncovered about its cellular functions. A brief background on the structure and function of SGTA is given, highlighting its importance to biomedicine and related fields. The current level of knowledge and what remains to be understood about the structure and function of SGTA is summarized, discussing the potential direction of future research.
机译:小的富含谷氨酰胺,四肽重复序列的蛋白质α(SGTA)在质量控制失调到细胞质的分泌和膜蛋白中起着新兴作用,在尾锚(TA)膜蛋白生物发生中具有确定的作用。 SGTA由三个具有各自功能的结构域,一个协助蛋白质分选途径的N端二聚结构域,一个介导与热休克蛋白,蛋白酶体和激素受体以及病毒蛋白相互作用的中央四肽重复(TPR)域组成,以及一个C端富含谷氨酰胺的区域,可结合疏水性底物。 SGTA已与病毒生命周期和激素受体信号传导联系在一起,对各种疾病状态的发病机制都有影响。迄今为止,已经采用了一系列生物物理技术来详细表征SGTA结构,并研究其在不同生物学环境中与结合配偶体的相互作用。 SGTA结构的完整描述,以及对其作为陪伴分子的质量控制的进一步研究,可以为我们提供其在维持细胞蛋白稳定中作用的有用见解,并拓宽我们对相关病理机制的理解。这篇综述描述了SGTA的一些结构特征是如何阐明的,以及有关其细胞功能的发现。简要介绍了SGTA的结构和功能,突出了其对生物医学和相关领域的重要性。总结了当前的知识水平以及关于SGTA的结构和功能尚待理解的内容,讨论了未来研究的潜在方向。

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