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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Structural and functional characterization of the Geobacillus copper nitrite reductase: Involvement of the unique N-terminal region in the interprotein electron transfer with its redox partner
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Structural and functional characterization of the Geobacillus copper nitrite reductase: Involvement of the unique N-terminal region in the interprotein electron transfer with its redox partner

机译:芽孢杆菌亚硝酸铜还原酶的结构和功能表征:独特的N末端区域参与蛋白间电子转移及其氧化还原伴侣

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摘要

The crystal structures of copper-containing nitrite reductase (CuNiR) from the thermophilic Gram-positive bacterium Geobacillus kaustophilus HTA426 and the amino (N)-terminal 68 residue-deleted mutant were determined at resolutions of 1.3 ? and 1.8 ?, respectively. Both structures show a striking resemblance with the overall structure of the well-known CuNiRs composed of two Greek key β-barrel domains; however, a remarkable structural difference was found in the N-terminal region. The unique region has one β-strand and one α-helix extended to the northern surface of the type-1 copper site. The superposition of the Geobacillus CuNiR model on the electron-transfer complex structure of CuNiR with the redox partner cytochrome c551 in other denitrifier system led us to infer that this region contributes to the transient binding with the partner protein during the interprotein electron transfer reaction in the Geobacillus system. Furthermore, electron-transfer kinetics experiments using N-terminal residue-deleted mutant and the redox partner, Geobacillus cytochrome c551, were carried out. These structural and kinetics studies demonstrate that the region is directly involved in the specific partner recognition.
机译:测定嗜热的革兰氏阳性细菌kaustophilus HTA426的含铜亚硝酸还原酶(CuNiR)的晶体结构和氨基(N)-末端缺失68个残基的突变体的分辨率为1.3?和1.8Ω。这两种结构都与由两个希腊关键β-桶结构域组成的众所周知的CuNiR的整体结构极为相似。然而,在N端区域发现了显着的结构差异。该独特区域具有一个延伸至1型铜位点北表面的β链和一个α螺旋。在其他反硝化系统中,Geobacillus CuNiR模型在CuNiR与氧化还原伴侣细胞色素c551的电子传递复合结构上的叠加导致我们推断该区域在蛋白间电子传递反应过程中有助于与伴侣蛋白的瞬时结合。地芽孢杆菌系统。此外,进行了使用N-末端残基缺失的突变体和氧化还原伴侣Geobacillus cytochrome c551的电子转移动力学实验。这些结构和动力学研究表明,该区域直接参与了特定伙伴的识别。

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