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核磁共振光谱法鉴定出对别构调控重要的酵母分支酸变位酶的构象转变。

Conformational Transitions in Yeast Chorismate Mutase Important for Allosteric Regulation as Identified by Nuclear Magnetic Resonance Spectroscopy.

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, PA 16802, USA.

Department of Chemistry, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

J Mol Biol. 2022 Sep 15;434(17):167531. doi: 10.1016/j.jmb.2022.167531. Epub 2022 Mar 5.

Abstract

Proteins fluctuate between different conformations in solution, and these conformational fluctuations can be important for protein function and allosteric regulation. The chorismate mutase from Saccharomyces cerevisiae (ScCM), a key enzyme in the biosynthesis of aromatic amino acids, is allosterically activated and inhibited by tryptophan and tyrosine, respectively. It was initially proposed that in the absence of effector, ScCM fluctuates between activated R and inhibited T conformations according to the Monod-Wyman-Changeux (MWC) model, although a more complex regulation pattern was later suggested by mutagenesis and kinetic data. Here we used NMR relaxation dispersion experiments to understand the conformational fluctuations on the microsecond-to-millisecond timescale that occur in ScCM. In the absence of allosteric effectors, ScCM did not exclusively exchange between T and R conformations, suggesting that the two-state MWC model is insufficient to explain conformational dynamics. Addition of tyrosine led to the quenching of much of the motion on this timescale, while new motions were identified in the presence of tryptophan. These new motions are consistent with conformational fluctuations into an alternative conformation that may be important for enzyme activity.

摘要

蛋白质在溶液中会发生构象变化,这些构象变化对于蛋白质的功能和变构调节非常重要。酿酒酵母的分支酸变位酶(ScCM)是芳香族氨基酸生物合成中的关键酶,分别受到色氨酸和酪氨酸的变构激活和抑制。最初提出的观点是,在没有效应物的情况下,ScCM 根据 Monod-Wyman-Changeux(MWC)模型在激活的 R 构象和抑制的 T 构象之间波动,尽管后来的突变和动力学数据表明存在更复杂的调节模式。在这里,我们使用 NMR 弛豫分散实验来了解 ScCM 中在微秒到毫秒时间尺度上发生的构象波动。在没有变构效应物的情况下,ScCM 并没有在 T 和 R 构象之间排他性地交换,这表明二态 MWC 模型不足以解释构象动力学。添加酪氨酸导致此时间尺度上的大部分运动被猝灭,而在存在色氨酸的情况下则鉴定出了新的运动。这些新的运动与可能对酶活性重要的替代构象的构象波动一致。

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