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来自念珠藻属PCC 7120的蓝藻细胞色素b6f复合物的结构-功能、稳定性及化学修饰

Structure-Function, Stability, and Chemical Modification of the Cyanobacterial Cytochrome b6f Complex from Nostoc sp. PCC 7120.

作者信息

Baniulis Danas, Yamashita Eiki, Whitelegge Julian P, Zatsman Anna I, Hendrich Michael P, Hasan S Saif, Ryan Christopher M, Cramer William A

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

J Biol Chem. 2009 Apr 10;284(15):9861-9. doi: 10.1074/jbc.M809196200. Epub 2009 Feb 2.

Abstract

The crystal structure of the cyanobacterial cytochrome b(6)f complex has previously been solved to 3.0-A resolution using the thermophilic Mastigocladus laminosus whose genome has not been sequenced. Several unicellular cyanobacteria, whose genomes have been sequenced and are tractable for mutagenesis, do not yield b(6)f complex in an intact dimeric state with significant electron transport activity. The genome of Nostoc sp. PCC 7120 has been sequenced and is closer phylogenetically to M. laminosus than are unicellular cyanobacteria. The amino acid sequences of the large core subunits and four small peripheral subunits of Nostoc are 88 and 80% identical to those in the M. laminosus b(6)f complex. Purified b(6)f complex from Nostoc has a stable dimeric structure, eight subunits with masses similar to those of M. laminosus, and comparable electron transport activity. The crystal structure of the native b(6)f complex, determined to a resolution of 3.0A (PDB id: 2ZT9), is almost identical to that of M. laminosus. Two unique aspects of the Nostoc complex are: (i) a dominant conformation of heme b(p) that is rotated 180 degrees about the alpha- and gamma-meso carbon axis relative to the orientation in the M. laminosus complex and (ii) acetylation of the Rieske iron-sulfur protein (PetC) at the N terminus, a post-translational modification unprecedented in cyanobacterial membrane and electron transport proteins, and in polypeptides of cytochrome bc complexes from any source. The high spin electronic character of the unique heme c(n) is similar to that previously found in the b(6)f complex from other sources.

摘要

先前已利用嗜热的层理鞭枝藻(其基因组未测序)将蓝藻细胞色素b(6)f复合物的晶体结构解析到3.0埃分辨率。几种基因组已测序且易于诱变的单细胞蓝藻,无法产生具有显著电子传递活性的完整二聚体状态的b(6)f复合物。念珠藻属PCC 7120的基因组已测序,在系统发育上比单细胞蓝藻更接近层理鞭枝藻。念珠藻大核心亚基和四个小外周亚基的氨基酸序列与层理鞭枝藻b(6)f复合物中的序列分别有88%和80%的同一性。从念珠藻中纯化的b(6)f复合物具有稳定的二聚体结构、八个质量与层理鞭枝藻相似的亚基以及相当的电子传递活性。天然b(6)f复合物的晶体结构解析到3.0埃分辨率(蛋白质数据银行编号:2ZT9),与层理鞭枝藻的几乎相同。念珠藻复合物的两个独特之处在于:(i) 血红素b(p)的主要构象相对于层理鞭枝藻复合物中的取向围绕α-和γ-中位碳轴旋转了180度;(ii) 铁硫蛋白(PetC)在N端的乙酰化,这是蓝藻膜和电子传递蛋白以及任何来源的细胞色素bc复合物多肽中前所未有的翻译后修饰。独特血红素c(n)的高自旋电子特性与先前在其他来源的b(6)f复合物中发现的相似。

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