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变节多肽:我们适应环境。

Turncoat Polypeptides: We Adapt to Our Environment.

机构信息

Instituto de Química-Física Rocasolano (IQFR), Consejo Superior de Investigaciones Científicas (CSIC), Serrano 119, 28006, Madrid, Spain.

Centro de Investigaciones Biológicas (CIB), Consejo Superior de Investigaciones Científicas (CSIC), Ramiro de Maeztu 9, 28040, Madrid, Spain.

出版信息

Chembiochem. 2020 Feb 17;21(4):432-441. doi: 10.1002/cbic.201900446. Epub 2019 Nov 15.

Abstract

A common interpretation of Anfinsen's hypothesis states that one amino acid sequence should fold into a single, native, ordered state, or a highly similar set thereof, coinciding with the global minimum in the folding-energy landscape, which, in turn, is responsible for the function of the protein. However, this classical view is challenged by many proteins and peptide sequences, which can adopt exchangeable, significantly dissimilar conformations that even fulfill different biological roles. The similarities and differences of concepts related to these proteins, mainly chameleon sequences, metamorphic proteins, and switch peptides, which are all denoted herein "turncoat" polypeptides, are reviewed. As well as adding a twist to the conventional view of protein folding, the lack of structural definition adds clear versatility to the activity of proteins and can be used as a tool for protein design and further application in biotechnology and biomedicine.

摘要

安芬森假说的一种常见解释是,一个氨基酸序列应该折叠成一个单一的、天然的、有序的状态,或者是高度相似的状态,与折叠能景观中的全局最小值相对应,而全局最小值又负责蛋白质的功能。然而,这一经典观点受到许多蛋白质和肽序列的挑战,这些序列可以采用可交换的、显著不同的构象,甚至可以发挥不同的生物学作用。本文综述了与这些蛋白质相关的概念的相似性和差异性,主要是变色龙序列、变形蛋白和开关肽,它们都被称为“变节”多肽。除了给蛋白质折叠的传统观点增加一个转折之外,结构定义的缺乏还为蛋白质的活性增加了明显的多功能性,并可作为蛋白质设计的工具,并进一步应用于生物技术和生物医学。

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