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高等植物细胞色素 b-f 复合物的合成与组装。

Synthesis and assembly of the cytochrome b-f complex in higher plants.

机构信息

Botany School, University of Cambridge, Downing Street, CB2 3EA, Cambridge, UK.

出版信息

Photosynth Res. 1988 Jul;17(1-2):125-44. doi: 10.1007/BF00047685.

Abstract

The cytochrome b-f complex is composed of four polypeptide subunits, three of which, cytochrome f, cytochrome b-563 and subunit IV, are encoded in chloroplast DNA and synthesised within the chloroplast, and the fourth, the Rieske FeS protein, is encoded in nuclear DNA and synthesised in the cytoplasm. The assembly of the cytochrome b-f complex therefore requires the interaction of subunits encoded by different genomes. A key role for the nuclear-encoded Rieske FeS protein in the assembly of the complex is suggested by a study of cytochrome b-f complex mutants. The assembly of individual subunits of the complex may be regulated by the availability of prosthetic groups. The genes for the chloroplast-encoded subunits and cDNA clones for the Rieske FeS protein have been isolated and characterised. Cytochrome f and the Rieske FeS protein are synthesised initially with N-terminal presequences required for their correct assembly within the chloroplast. The deduced amino acid sequences of the four subunits have been used to suggest models for the arrangement of the polypeptides in the thylakoid membrane.

摘要

细胞色素 b-f 复合物由四个多肽亚基组成,其中三个亚基,细胞色素 f、细胞色素 b-563 和亚基 IV,由叶绿体 DNA 编码并在叶绿体中合成,第四个亚基, Rieske FeS 蛋白,由核 DNA 编码并在细胞质中合成。因此,细胞色素 b-f 复合物的组装需要不同基因组编码的亚基相互作用。对细胞色素 b-f 复合物突变体的研究表明,核编码的 Rieske FeS 蛋白在复合物的组装中起着关键作用。复合物各个亚基的组装可能受到辅基可用性的调节。已经分离和鉴定了编码叶绿体编码亚基的基因和 Rieske FeS 蛋白的 cDNA 克隆。细胞色素 f 和 Rieske FeS 蛋白最初合成时带有 N 端前导序列,这些序列对于它们在叶绿体中的正确组装是必需的。四个亚基的推导氨基酸序列已被用于提出类囊体膜中多肽排列的模型。

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