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通过预结构化模体研究无规卷曲蛋白的目标结合行为。

Target-binding behavior of IDPs via pre-structured motifs.

机构信息

Korea Research Institute of Bioscience and Biotechnology, Daejeon, South Korea.

Korea Research Institute of Bioscience and Biotechnology, Daejeon, South Korea.

出版信息

Prog Mol Biol Transl Sci. 2021;183:187-247. doi: 10.1016/bs.pmbts.2021.07.031. Epub 2021 Sep 29.

Abstract

Pre-Structured Motifs (PreSMos) are transient secondary structures observed in many intrinsically disordered proteins (IDPs) and serve as protein target-binding hot spots. The prefix "pre" highlights that PreSMos exist a priori in the target-unbound state of IDPs as the active pockets of globular proteins pre-exist before target binding. Therefore, a PreSMo is an "active site" of an IDP; it is not a spatial pocket, but rather a secondary structural motif. The classical and perhaps the most effective approach to understand the function of a protein has been to determine and investigate its structure. Ironically or by definition IDPs do not possess structure (here structure refers to tertiary structure only). Are IDPs then entirely structureless? The PreSMos provide us with an atomic-resolution answer to this question. For target binding, IDPs do not rely on the spatial pockets afforded by tertiary or higher structures. Instead, they utilize the PreSMos possessing particular conformations that highly presage the target-bound conformations. PreSMos are recognized or captured by targets via conformational selection (CS) before their conformations eventually become stabilized via structural induction into more ordered bound structures. Using PreSMos, a number of, if not all, IDPs can bind targets following a sequential pathway of CS followed by an induced fit (IF). This chapter presents several important PreSMos implicated in cancers, neurodegenerative diseases, and other diseases along with discussions on their conformational details that mediate target binding, a structural rationale for unstructured proteins.

摘要

预结构基序 (PreSMos) 是在许多无规卷曲蛋白质 (IDPs) 中观察到的瞬态二级结构,它们充当蛋白质靶标结合的热点。前缀 "pre" 强调 PreSMos 预先存在于 IDPs 的靶标未结合状态中,就像球状蛋白质的活性口袋在靶标结合之前就已经存在一样。因此,PreSMo 是 IDP 的 "活性位点";它不是一个空间口袋,而是一个二级结构基序。了解蛋白质功能的经典方法,也许是最有效的方法,一直是确定和研究其结构。具有讽刺意味的是,或者根据定义,IDPs 没有结构(这里的结构仅指三级结构)。那么 IDPs 完全没有结构吗?PreSMos 为我们提供了这个问题的原子分辨率答案。对于靶标结合,IDPs 不依赖于三级或更高结构提供的空间口袋。相反,它们利用具有特定构象的 PreSMos,这些构象高度预示靶标结合构象。PreSMos 通过构象选择 (CS) 被靶标识别或捕获,然后通过结构诱导进入更有序的结合结构,最终使其构象稳定。使用 PreSMos,许多 IDPs(如果不是全部的话)可以遵循 CS 然后是诱导契合 (IF) 的顺序途径结合靶标。本章介绍了一些与癌症、神经退行性疾病和其他疾病相关的重要 PreSMos,并讨论了它们介导靶标结合的构象细节、无规卷曲蛋白质的结构原理。

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