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Structural Characterization of Heme Environmental Mutants of CgHmuT that Shuttles Heme Molecules to Heme Transporters

机译:CgHmuT血红素环境突变体的结构表征该突变体将血红素分子穿梭至血红素转运蛋白。

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摘要

Corynebacteria contain a heme uptake system encoded in hmuTUV genes, in which HmuT protein acts as a heme binding protein to transport heme to the cognate transporter HmuUV. The crystal structure of HmuT from Corynebacterium glutamicum (CgHmuT) reveals that heme is accommodated in the central cleft with His141 and Tyr240 as the axial ligands and that Tyr240 forms a hydrogen bond with Arg242. In this work, the crystal structures of H141A, Y240A, and R242A mutants were determined to understand the role of these residues for the heme binding of CgHmuT. Overall and heme environmental structures of these mutants were similar to those of the wild type, suggesting that there is little conformational change in the heme-binding cleft during heme transport reaction with binding and the dissociation of heme. A loss of one axial ligand or the hydrogen bonding interaction with Tyr240 resulted in an increase in the redox potential of the heme for CgHmuT to be reduced by dithionite, though the wild type was not reduced under physiological conditions. These results suggest that the heme environmental structure stabilizes the ferric heme binding in CgHmuT, which will be responsible for efficient heme uptake under aerobic conditions where Corynebacteria grow.
机译:棒状杆菌包含在hmuTUV基因中编码的血红素摄取系统,其中HmuT蛋白充当血红素结合蛋白,将血红素转运至同源转运蛋白HmuUV。来自谷氨酸棒杆菌的HmuT的晶体结构(CgHmuT)显示血红素被容纳在中央裂隙中,其中His141和Tyr240作为轴向配体,并且Tyr240与Arg242形成氢键。在这项工作中,确定了H141A,Y240A和R242A突变体的晶体结构,以了解这些残基对CgHmuT血红素结合的作用。这些突变体的总体和血红素环境结构与野生型相似,这表明在血红素转运反应与血红素的结合和解离过程中,血红素结合裂隙几乎没有构象变化。一个轴向配体的丧失或与Tyr240的氢键相互作用导致连二亚硫酸盐降低了血红素对CgHmuT的氧化还原电位,尽管野生型在生理条件下并未减少。这些结果表明血红素的环境结构稳定了CgHmuT中铁血红素的结合,这将在棒状杆菌生长的好氧条件下有效吸收血红素。

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