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琥珀酸:醌氧化还原酶——我们能从产琥珀酸沃林氏菌的醌:富马酸还原酶中学到什么?

Succinate:quinone oxidoreductases--what can we learn from Wolinella succinogenes quinol:fumarate reductase?

作者信息

Lancaster C R

机构信息

Max-Planck-Institut für Biophysik, Abteilung Molekulare Membranbiologie, Heinrich-Hoffmann-Str. 7, D-60528, Frankfurt am Main, Germany.

出版信息

FEBS Lett. 2001 Aug 31;504(3):133-41. doi: 10.1016/s0014-5793(01)02706-5.

Abstract

The structure of Wolinella succinogenes quinol:fumarate reductase by X-ray crystallography has been determined at 2.2-A resolution [Lancaster et al. (1999), Nature 402, 377-385]. Based on the structure of the three protein subunits A, B, and C and the arrangement of the six prosthetic groups (a covalently bound FAD, three iron-sulphur clusters, and two haem b groups) a pathway of electron transfer from the quinol-oxidising dihaem cytochrome b in the membrane to the site of fumarate reduction in the hydrophilic subunit A has been proposed. By combining the results from site-directed mutagenesis, functional and electrochemical characterisation, and X-ray crystallography, a residue was identified which is essential for menaquinol oxidation. [Lancaster et al. (2000), Proc. Natl. Acad. Sci. USA 97, 13051-13056]. The location of this residue in the structure suggests that the coupling of the oxidation of menaquinol to the reduction of fumarate in dihaem-containing succinate:quinone oxidoreductases could be associated with the generation of a transmembrane electrochemical potential. Based on crystallographic analysis of three different crystal forms of the enzyme and the results from site-directed mutagenesis, we have derived a mechanism of fumarate reduction and succinate oxidation [Lancaster et al. (2001) Eur. J. Biochem. 268, 1820-1827], which should be generally relevant throughout the superfamily of succinate:quinone oxidoreductases.

摘要

通过X射线晶体学,已在2.2埃分辨率下测定了产琥珀酸沃林氏菌醌:富马酸还原酶的结构[兰卡斯特等人(1999年),《自然》402卷,377 - 385页]。基于三个蛋白质亚基A、B和C的结构以及六个辅基(一个共价结合的FAD、三个铁硫簇和两个血红素b基团)的排列,提出了从膜中氧化醌的双血红素细胞色素b到亲水性亚基A中富马酸还原位点的电子传递途径。通过结合定点诱变、功能和电化学表征以及X射线晶体学的结果,鉴定出一个对甲基萘醌氧化至关重要的残基[兰卡斯特等人(2000年),《美国国家科学院院刊》97卷,13051 - 13056页]。该残基在结构中的位置表明,含双血红素的琥珀酸:醌氧化还原酶中甲基萘醌氧化与富马酸还原的偶联可能与跨膜电化学势的产生有关。基于对该酶三种不同晶体形式的晶体学分析以及定点诱变的结果,我们推导了富马酸还原和琥珀酸氧化的机制[兰卡斯特等人(2001年),《欧洲生物化学杂志》268卷,1820 - 1827页],这一机制在琥珀酸:醌氧化还原酶超家族中应具有普遍相关性。

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