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叶绿体细胞色素f的晶体结构揭示了一种新型的细胞色素折叠和意想不到的血红素连接。

Crystal structure of chloroplast cytochrome f reveals a novel cytochrome fold and unexpected heme ligation.

作者信息

Martinez S E, Huang D, Szczepaniak A, Cramer W A, Smith J L

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, IN 47907-1392.

出版信息

Structure. 1994 Feb 15;2(2):95-105. doi: 10.1016/s0969-2126(00)00012-5.

Abstract

BACKGROUND

Cytochrome f is the high potential electron acceptor of the chloroplast cytochrome b6f complex, and is the electron donor to plastocyanin. The 285-residue cytochrome f subunit is anchored in the thylakoid membrane of the chloroplast by a single membrane-spanning segment near the carboxyl terminus. A soluble redox-active 252-residue lumen-side polypeptide with native spectroscopic and redox properties, missing the membrane anchor and carboxyl terminus, was purified from turnip chloroplasts for structural studies.

RESULTS

The crystal structure of cytochrome f, determined to 2.3 A resolution, has several unexpected features. The 252-residue polypeptide is organized into one large and one small domain. The larger heme-binding domain is strikingly different from known structures of other c-type cytochromes and has the same fold as the type III domain of the animal protein, fibronectin. Cytochrome f binds heme with an unprecedented axial heme iron ligand: the amino terminus of the polypeptide.

CONCLUSION

The first atomic structure of a subunit of either the cytochrome b6f complex or of the related cytochrome bc1 complex has been obtained. The structure of cytochrome f allows prediction of the approximate docking site of plastocyanin and should allow systematic studies of the mechanism of intra- and inter-protein electron transfer between the cytochrome heme and plastocyanin copper, which are approximately isopotential. The unprecedented axial heme iron ligand also provides information on the sequence of events (i.e. cleavage of signal peptide and ligation of heme) associated with translocation of the cytochrome across the membrane and its subsequent folding.

摘要

背景

细胞色素f是叶绿体细胞色素b6f复合物的高电位电子受体,也是向质体蓝素提供电子的供体。由285个氨基酸残基组成的细胞色素f亚基通过靠近羧基末端的单个跨膜片段锚定在叶绿体的类囊体膜中。从芜菁叶绿体中纯化出一种可溶性的、具有氧化还原活性的、由252个氨基酸残基组成的、位于类囊体腔一侧的多肽,该多肽缺失膜锚定区和羧基末端,用于结构研究。

结果

细胞色素f的晶体结构分辨率达到2.3埃,具有几个意想不到的特征。由252个氨基酸残基组成的多肽被组织成一个大结构域和一个小结构域。较大的血红素结合结构域与其他c型细胞色素的已知结构显著不同,其折叠方式与动物蛋白纤连蛋白的III型结构域相同。细胞色素f以一种前所未有的轴向血红素铁配体结合血红素:多肽的氨基末端。

结论

已获得细胞色素b6f复合物或相关细胞色素bc1复合物亚基的首个原子结构。细胞色素f的结构有助于预测质体蓝素的大致对接位点,并应有助于系统研究细胞色素血红素与质体蓝素铜之间蛋白质内和蛋白质间电子转移的机制,它们的电位近似相等。这种前所未有的轴向血红素铁配体也提供了与细胞色素跨膜转运及其后续折叠相关的事件顺序(即信号肽的切割和血红素的连接)的信息。

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