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HYPK 中的聚集倾向区域有助于其形成毒性蛋白聚集体的隔离复合物。

Aggregation-prone Regions in HYPK Help It to Form Sequestration Complex for Toxic Protein Aggregates.

机构信息

Computational and Functional Genomics Group, Centre for DNA Fingerprinting and Diagnostics, Nampally, Hyderabad 500001, India; Graduate Studies, Manipal University, Manipal, Karnataka 576104, India.

Computational and Functional Genomics Group, Centre for DNA Fingerprinting and Diagnostics, Nampally, Hyderabad 500001, India.

出版信息

J Mol Biol. 2018 Mar 30;430(7):963-986. doi: 10.1016/j.jmb.2018.02.007. Epub 2018 Feb 17.

Abstract

Protein aggregates result from altered structural conformations and they can perturb cellular homeostasis. Prevention mechanisms, which function against protein aggregation by modulatory processes, are diverse and redundant. In this study, we have characterized Huntingtin interacting protein K (HYPK) as a global aggregation-regulatory protein. We report the mechanistic details of how HYPK's aggregation-prone regions allow it to sense and prevent other toxic protein's aggregation by forming unique annular-shaped sequestration complexes. Screenings for interacting partners of different aggregation-prone proteins identify HYPK as a global interacting partner/regulator of Huntingtin97Qexon1, α-Synuclein-A53T and Superoxide dismutase1-G93A. C-terminal hydrophobic region in HYPK makes direct contacts with aggregates to initiate the formation of sequestration complexes. HYPK acts as aggregate sensor by existing in a seeded amyloid-like state which also favors its own concentration-dependent self-oligomerization. Oligomerization of HYPK leads to annular and non-fibrillar/amorphous aggregates. Two hydrophobic segments in the C-terminus of HYPK are responsible for its own aggregations. Self-association of HYPK follows seed nucleation, in which oligomeric HYPK seeds nucleate to annular structures. Annular oligomers of HYPK fuse with each other to form amorphous aggregates. HYPK shows differential interactions with aggregation-prone and non-aggregating proteins, as it preferentially binds to aggregation-prone proteins with higher affinity than native/non-aggregating proteins. This favors the formation of HYPK's sequestration complexes both in cytosol and in ribosome. Besides having aggregation-preventive property, HYPK also reduces the cellular level of toxic proteins. In vivo, HYPK sequestration complexes prevent the formation of toxic protein aggregates to physiologically show positive impact on cell survival and restoration of normal cell physiology.

摘要

蛋白质聚集体是由结构构象改变引起的,它们会扰乱细胞内的稳态。通过调节过程发挥作用的预防机制多种多样且具有冗余性。在这项研究中,我们将 Huntingtin 相互作用蛋白 K(HYPK)鉴定为一种全局聚集调节蛋白。我们报告了 HYPK 的聚集倾向区域如何通过形成独特的环形隔离复合物来感知和预防其他毒性蛋白聚集的机制细节。针对不同聚集倾向蛋白的相互作用伙伴进行筛选,鉴定出 HYPK 是 Huntingtin97Qexon1、α-Synuclein-A53T 和超氧化物歧化酶 1-G93A 的全局相互作用伙伴/调节剂。HYPK 的 C 端疏水区与聚集体直接接触,启动隔离复合物的形成。HYPK 通过存在于种属样状态来充当聚集体传感器,这也有利于其自身浓度依赖性的自寡聚化。HYPK 的寡聚化导致环形和非纤维状/无定形聚集体。HYPK C 端的两个疏水区段负责其自身的聚集。HYPK 的自缔合遵循种子成核,其中寡聚 HYPK 种子成核形成环形结构。环形寡聚 HYPK 相互融合形成无定形聚集体。HYPK 与聚集倾向蛋白和非聚集蛋白表现出不同的相互作用,因为它优先与聚集倾向蛋白以比天然/非聚集蛋白更高的亲和力结合。这有利于 HYPK 的隔离复合物在细胞质和核糖体中形成。除了具有聚集预防特性外,HYPK 还降低了毒性蛋白的细胞水平。在体内,HYPK 的隔离复合物可防止毒性蛋白聚集体的形成,从而对细胞存活和恢复正常细胞生理产生积极影响。

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