结核分枝杆菌尿嘧啶- dna糖基酶(MtUng)的结构可塑性及其功能意义。

S M Arif, K Geethanandan, P Mishra, A Surolia, U Varshney, M Vijayan
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引用次数: 13

摘要

测定了结核分枝杆菌(Mycobacterium tuberculosis, MtUng) I家族尿嘧啶- dna糖基酶及其与尿嘧啶及其衍生物的配合物的17个独立晶体结构,分布在5种不同的晶体形态中。用等温滴定量热法测定了配合物结合的热力学参数。双结构域蛋白表现出开放和封闭的构象,表明DNA结合上结构域的关闭涉及构象选择。酶分子中的片段迁移率被限制在32个残基延伸,这在DNA结合中起主要作用。尿嘧啶及其衍生物可以以两种可能的方向与蛋白质结合。当在5'位置有一个大取代基时,它们中只有一个是可能的。配合物的晶体结构为观察到的热力学参数提供了合理的理论依据。除了对蛋白质分子的结构、可塑性和相互作用提供新的见解外,本研究的结果还为基于结构的抑制剂设计提供了一个平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural plasticity in Mycobacterium tuberculosis uracil-DNA glycosylase (MtUng) and its functional implications.

17 independent crystal structures of family I uracil-DNA glycosylase from Mycobacterium tuberculosis (MtUng) and its complexes with uracil and its derivatives, distributed among five distinct crystal forms, have been determined. Thermodynamic parameters of binding in the complexes have been measured using isothermal titration calorimetry. The two-domain protein exhibits open and closed conformations, suggesting that the closure of the domain on DNA binding involves conformational selection. Segmental mobility in the enzyme molecule is confined to a 32-residue stretch which plays a major role in DNA binding. Uracil and its derivatives can bind to the protein in two possible orientations. Only one of them is possible when there is a bulky substituent at the 5' position. The crystal structures of the complexes provide a reasonable rationale for the observed thermodynamic parameters. In addition to providing fresh insights into the structure, plasticity and interactions of the protein molecule, the results of the present investigation provide a platform for structure-based inhibitor design.

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