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Millisecond Timescale Motions Connect Amino Acid Interaction Networks in Alpha Tryptophan Synthase

机译:毫秒级时标运动连接Alpha色氨酸合酶中的氨基酸相互作用网络

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摘要

Tryptophan synthase is a model system for understanding allosteric regulation within enzyme complexes. Amino acid interaction networks were previously delineated in the isolated alpha subunit (αTS) in the absence of the beta subunit (βTS). The amino acid interaction networks were different between the ligand-free enzyme and the enzyme actively catalyzing turnover. Previous X-ray crystallography studies indicated only minor localized changes when ligands bind αTS, and so, structural changes alone could not explain the changes to the amino acid interaction networks. We hypothesized that the network changes could instead be related to changes in conformational dynamics. As such, we conducted nuclear magnetic resonance relaxation studies on different substrate- and products-bound complexes of αTS. Specifically, we collected 15N R2 relaxation dispersion data that reports on microsecond-to-millisecond timescale motion of backbone amide groups. These experiments indicated that there are conformational exchange events throughout αTS. Substrate and product binding change specific motional pathways throughout the enzyme, and these pathways connect the previously identified network residues. These pathways reach the αTS/βTS binding interface, suggesting that the identified dynamic networks may also be important for communication with the βTS subunit.
机译:色氨酸合酶是用于理解酶复合物中的变构调节的模型系统。事先在不存在β亚基(βTS)的情况下,在分离的α亚基(αTS)中描述了氨基酸相互作用网络。不含配体的酶和主动催化转换的酶之间的氨基酸相互作用网络不同。以前的X射线晶体学研究表明,当配体结合αTS时,局部变化很小,因此,仅靠结构变化不能解释氨基酸相互作用网络的变化。我们假设网络的变化可能与构象动力学的变化有关。因此,我们对αTS的不同底物和产物结合的复合物进行了核磁共振弛豫研究。具体来说,我们收集了 15 N R2弛豫分散数据,该数据报告了骨架酰胺基团在微秒到毫秒之间的时标运动。这些实验表明在整个αTS中存在构象交换事件。底物和产物的结合改变了整个酶的特定运动途径,这些途径连接了先前确定的网络残基。这些途径到达αTS/βTS结合界面,表明所鉴定的动态网络对于与βTS亚基的通信也可能是重要的。

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