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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Structural and mechanistic insights into Mycothiol Disulphide Reductase and the Mycoredoxin-1-alkylhydroperoxide reductase E assembly of Mycobacterium tuberculosis
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Structural and mechanistic insights into Mycothiol Disulphide Reductase and the Mycoredoxin-1-alkylhydroperoxide reductase E assembly of Mycobacterium tuberculosis

机译:分枝杆菌二硫代二硫代二硫代硫化物还原酶和霉菌毒素-1-烷基酰氧化物还原酶E组装分枝杆菌的结构和机械洞察力

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摘要

Mycobacteria employ a versatile machinery of the mycothiol-dependent system, containing the proteins mycothiol disulfide reductase (Mtr), the oxido-reductase Mycoredoxin-1 (Mrx-1) and the alkyl-hydroperoxide subunit E (AhpE). The mycothiol-dependent protein ensemble regulates the balance of oxidized:reduced mycothiol, to ensure a reductive intracellular environment for optimal functioning of its proteins even upon exposure to oxidative stress. Here, we determined the first low-resolution solution structure of Mycobacterium tuberculosis Mtr (MtMtr) derived from small-angle X-ray scattering data, which provides insight into its dimeric state. The solution shape reveals the two NADPH-binding domains inside the dimeric MtMtr in different conformations. NMR-titration shows that the MtMtr-MtMrx-1 interaction is characterized by a fast exchange regime and critical residues involved in the protein-protein interaction were identified. Using NMR spectroscopy and docking studies, the epitopes of MtMrx-1 and MtAhpE interaction are described, shedding new light into the interaction interface and mechanism of action. Finally, the essential residue of MtMrx-1 identified in the interaction with MtMtr and MtAhpE form a platform for structure-guided drug design against the versatile enzyme machinery of the mycothiol-dependent system inside M. tuberculosis.
机译:分枝杆菌采用依赖于霉硫醇依赖性系统的多功能机制,含有蛋白质霉硫醇二硫化物还原酶(MTR),氧化还原酶Mycoredoxin-1(MRX-1)和烷基 - 氢过氧化物亚基E(AHPE)。依赖霉硫醇依赖性蛋白质合奏调节氧化的平衡:降低菌射硫醇,以确保即使在暴露于氧化应激后,也能够在其蛋白质的最佳功能上进行还原的细胞内环境。这里,我们确定了来自小角度X射线散射数据的分枝杆菌的第一种低分辨率溶液结构,其提供了进入其二聚体状态的洞察力。溶液形状在不同构象中揭示了二聚体MTMTR内的两个NADPH结合结构域。 NMR滴定表明,MTMTR-MTMRX-1相互作用的特征在于,鉴定了蛋白质 - 蛋白质相互作用中涉及的临界残留物。使用NMR光谱和对接研究,描述了MTMRX-1和MTAHPE相互作用的表位,将新光脱落进入相互作用界面和作用机制。最后,在与MTMTR和MTAHPE的相互作用中鉴定的MTMRX-1的基本残余物​​形成用于结构引导的药物设计的平台,针对霉硫醇依赖性系统内的霉菌酶机的多功能酶机。

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