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变构作用是一个模糊的概念吗?

Is allostery a fuzzy concept?

机构信息

Institute of Molecular Biology and Pathology, CNR, Rome, Italy.

Department of Life, Health, and Environmental Sciences, University of L'Aquila, Italy.

出版信息

FEBS Open Bio. 2024 Jul;14(7):1040-1056. doi: 10.1002/2211-5463.13794. Epub 2024 May 23.

Abstract

Allostery is an important property of biological macromolecules which regulates diverse biological functions such as catalysis, signal transduction, transport, and molecular recognition. However, the concept was expressed using two different definitions by J. Monod and, over time, more have been added by different authors, making it fuzzy. Here, we reviewed the different meanings of allostery in the current literature and found that it has been used to indicate that the function of a protein is regulated by heterotropic ligands, and/or that the binding of ligands and substrates presents homotropic positive or negative cooperativity, whatever the hypothesized or demonstrated reaction mechanism might be. Thus, proteins defined to be allosteric include not only those that obey the two-state concerted model, but also those that obey different reaction mechanisms such as ligand-induced fit, possibly coupled to sequential structure changes, and ligand-linked dissociation-association. Since each reaction mechanism requires its own mathematical description and is defined by it, there are many possible 'allosteries'. This lack of clarity is made even fuzzier by the fact that the reaction mechanism is often assigned imprecisely and/or implicitly in the absence of the necessary experimental evidence. In this review, we examine a list of proteins that have been defined to be allosteric and attempt to assign a reaction mechanism to as many as possible.

摘要

变构作用是生物大分子的一个重要性质,它调节着多种生物学功能,如催化、信号转导、运输和分子识别。然而,J. Monod 曾用两个不同的定义来表述变构作用的概念,随着时间的推移,不同的作者又增加了更多的定义,使其变得模糊。在这里,我们回顾了当前文献中变构作用的不同含义,发现它被用来表示蛋白质的功能受到变构配体的调节,和/或配体和底物的结合呈现同变正或负协同性,无论假设或证明的反应机制可能是什么。因此,被定义为变构的蛋白质不仅包括那些遵循二态协同模型的蛋白质,还包括那些遵循不同反应机制的蛋白质,如配体诱导契合,可能与顺序结构变化偶联,以及配体连接的解离-结合。由于每种反应机制都需要自己的数学描述并由其定义,因此存在许多可能的“变构作用”。由于缺乏必要的实验证据,反应机制往往被不准确地和/或隐含地分配,这使得这种不清晰性更加模糊。在这篇综述中,我们检查了一组被定义为变构的蛋白质,并试图尽可能多地为它们分配一个反应机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ef7/11216940/bbd152007d85/FEB4-14-1040-g001.jpg

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