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首页> 外文期刊>The Biochemical Journal >Variants of the tetrahaem cytochrome c quinol dehydrogenase NrfH characterize the menaquinol-binding site, the haem c-binding motifs and the transmembrane segment.
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Variants of the tetrahaem cytochrome c quinol dehydrogenase NrfH characterize the menaquinol-binding site, the haem c-binding motifs and the transmembrane segment.

机译:四血红素细胞色素C喹诺醇脱氢酶NrfH的变体表征了甲萘醌结合位点,血红素c结合基序和跨膜区段。

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摘要

Members of the NapC/NrfH family are multihaem c-type cytochromes that exchange electrons with oxidoreductases situated at the outside of the cytoplasmic membrane or in the periplasmic space of many proteobacteria. They form a group of membrane-bound quinol dehydrogenases that are essential components of several electron transport chains, for example those of periplasmic nitrate respiration and respiratory nitrite ammonification. Knowledge of the structure-function relationships of NapC/NrfH proteins is scarce and only one high-resolution structure (Desulfovibrio vulgaris NrfH) is available. In the present study, several Wolinella succinogenes mutants that produce variants of NrfH, the membrane anchor of the cytochrome c nitrite reductase complex, were constructed and characterized in order to improve the understanding of the putative menaquinol-binding site, the maturation and function of the four covalently bound haem c groups and the importance of the N-terminal transmembrane segment. Based on amino acid sequence alignments, a homology model for W. succinogenes NrfH was constructed that underlines the overall conservation of tertiary structure in spite of a low sequence homology. The results support the proposed architecture of the menaquinol-binding site in D. vulgaris NrfH, demonstrate that each histidine residue arranged in one of the four CX(2)CH haem c-binding motifs is essential for NrfH maturation in W. succinogenes, and indicate a limited flexibility towards the length and structure of the transmembrane region.
机译:NapC / NrfH家族的成员是多血型c型细胞色素,可以与位于许多蛋白细菌的细胞质膜外部或周质空间中的氧化还原酶交换电子。它们形成一组膜结合的奎奴尔脱氢酶,它们是几个电子传输链(例如周质硝酸盐呼吸作用和呼吸亚硝酸盐氨化作用)的必不可少的组成部分。对NapC / NrfH蛋白的结构-功能关系的了解很少,并且只有一种高分辨率结构(Desulfovibrio vulgaris NrfH)可用。在本研究中,构建并鉴定了几种产生NrfH变体的Wolinella succinogenes突变体,该变体是细胞色素c亚硝酸盐还原酶复合物的膜锚,目的是提高对假定的甲萘醌结合位点,成熟和功能的了解。四个共价结合的血红素c基团和N端跨膜片段的重要性。基于氨基酸序列比对,建立了W. succinogenes NrfH的同源性模型,该模型强调了尽管低序列同源性,三级结构的总体保守性。结果支持拟南芥NrfH中的薄荷醇结合位点的拟议的体系结构,证明安排在四个CX(2)CH血红素c结合基序之一中的每个组氨酸残基对于W.琥珀酸中的NrfH成熟至关重要,并且表示对跨膜区域的长度和结构的灵活性有限。

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