Suppr超能文献

线粒体细胞色素bc1复合物与光系统II(醌结合位点)中醌氧化还原位点结构的比较。

Comparison of structure of quinone redox site in the mitochondrial cytochrome-bc1 complex and photosystem II (QB site).

作者信息

Saitoh I, Miyoshi H, Shimizu R, Iwamura H

机构信息

Department of Agricultural Chemistry, Kyoto University, Japan.

出版信息

Eur J Biochem. 1992 Oct 1;209(1):73-9. doi: 10.1111/j.1432-1033.1992.tb17262.x.

Abstract

A series of nitrophenolic electron-transport inhibitors (2-substituted 4,6-dinitrophenols) of rat liver mitochondrial cytochrome-bc1 complex and of photosystem II (QB site) of spinach thylakoids was synthesized. The structure/inhibitory-activity relationship was examined to elucidate differences in the three-dimensional structure of the quinone redox site in the two systems. These inhibitors occupy the ubiquinone redox site of cytochrome-bc1 complex competitively with natural ubiquinol, probably at a Qo reaction center. The inhibitory activity tended to increase with the length of the 2-substituent, which may correspond to the isoprenoid side chain of ubiquinone and plastoquinone, increased in both experimental systems. However, the strict structural requirements of the 2-substituent for binding to the ubiquinone or plastoquinone redox site were not identical. The alkyl substituents with a branching structure at the alpha-position to the benzene ring were favorable for inhibition of the cytochrome-bc1 complex, but not of photosystem II. Molecular-orbital calculations indicated that the main chain of 2-substituents with an alpha-branching structure was almost perpendicular to the benzene-ring plane because of steric congestion between the alpha-methyl and phenolic OH groups. The main chain of 2-substituents without an alpha-branching structure was flexible. Molecular-orbital studies indicated that ubiquinol was most stable when the portion of the isoprenoid side chain adjacent to the quinol ring was perpendicular to the quinol-ring plane, because of steric congestion by the vicinal OH and methyl groups. The side chain of plastoquinol was flexible because of the lack of a vicinal methyl group. Thus, the difference in the inhibitory activities between the two systems seemed to reflect the difference in the configuration of the isoprenoid side chain of ubiquinone and plastoquinone. These results suggested that the quinone redox site of the cytochrome-bc1 complex may recognize the configuration of the side chain near the quinone ring in the strict sense, whereas that of photosystem II (QB site) may recognize it in a loose sense.

摘要

合成了一系列大鼠肝线粒体细胞色素 bc1 复合物和菠菜类囊体光系统 II(QB 位点)的硝基酚类电子传递抑制剂(2-取代 4,6-二硝基酚)。研究了结构/抑制活性关系,以阐明这两个系统中醌氧化还原位点三维结构的差异。这些抑制剂与天然泛醇竞争性占据细胞色素 bc1 复合物的泛醌氧化还原位点,可能位于 Qo 反应中心。在两个实验系统中,随着 2-取代基长度的增加,抑制活性均有增加,这可能与泛醌和质体醌的类异戊二烯侧链相对应。然而,2-取代基与泛醌或质体醌氧化还原位点结合的严格结构要求并不相同。在苯环α位具有支链结构的烷基取代基有利于抑制细胞色素 bc1 复合物,但对光系统 II 无抑制作用。分子轨道计算表明,由于α-甲基和酚羟基之间的空间拥挤,具有α-支链结构的 2-取代基主链几乎垂直于苯环平面。没有α-支链结构的 2-取代基主链是灵活的。分子轨道研究表明,由于邻位羟基和甲基的空间拥挤,当类异戊二烯侧链与醌醇环相邻的部分垂直于醌醇环平面时,泛醇最稳定。由于缺乏邻位甲基,质体醌醇的侧链是灵活的。因此,两个系统之间抑制活性的差异似乎反映了泛醌和质体醌类异戊二烯侧链构型的差异。这些结果表明,细胞色素 bc1 复合物的醌氧化还原位点可能严格识别醌环附近侧链的构型,而光系统 II(QB 位点)可能较宽松地识别它。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验