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Allosteric regulation and catalysis emerge via a common route

机译:变构调节和催化通过共同途径出现

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摘要

Allosteric regulation of protein function is a mechanism by which an event in one place of a protein structure causes an effect at another site, much like the behavior of a telecommunications network in which a collection of transmitters, receivers and transceivers communicate with each other across long distances. For example, ligand binding or an amino acid mutation at an allosteric site can alter enzymatic activity or binding affinity in a distal region such as the active site or a second binding site. The mechanism of this site-to-site communication is of great interest, especially since allosteric effects must be considered in drug design and protein engineering. In this review, conformational mobility as the common route between allosteric regulation and catalysis is discussed. We summarize recent experimental data and the resulting insights into allostery within proteins, and we discuss the nature of future studies and the new applications that may result from increased understanding of this regulatory mechanism.
机译:蛋白质功能的变构调节是一种机制,通过这种机制,蛋白质结构的一个位置的事件会在另一位置产生影响,就像电信网络的行为一样,在该网络中,发射器,接收器和收发器的集合长时间相互通信距离。例如,变构位点处的配体结合或氨基酸突变可改变远端区域如活性位点或第二结合位点的酶活性或结合亲和力。这种站点间通信的机制引起了极大的兴趣,特别是因为在药物设计和蛋白质工程中必须考虑变构作用。在这篇综述中,构象迁移是变构调节和催化之间的常见途径。我们总结了最近的实验数据和对蛋白质内变构作用的见解,并讨论了未来研究的性质以及可能因对这种调节机制的更多了解而产生的新应用。

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