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红螺菌的捕光多肽。I. 红螺菌S1的第二种捕光多肽B 880-β(B 870-β)以及无类胡萝卜素突变体G-9+的氨基酸序列。无类胡萝卜素突变体G-9+。

The light-harvesting polypeptides of Rhodospirillum rubrum. I. The amino-acid sequence of the second light-harvestng polypeptide B 880-beta (B 870-beta) of Rhodospirillum rubrum S 1 and the carotenoidless mutant G-9+. carotenoidless mutant G-9+.

作者信息

Brunisholz R A, Suter F, Zuber H

出版信息

Hoppe Seylers Z Physiol Chem. 1984 Jul;365(7):675-88. doi: 10.1515/bchm2.1984.365.2.675.

Abstract

The light-harvesting complex B 880 from Rhodospirillum rubrum S 1 (wild type) and B 870 from the carotenoidless mutant G-9+ was shown to consist mainly of an organic solvent-(chloroform/methanol-) soluble and an organic solvent-insoluble polypeptide. The isolation and separation of these two low-molecular-mass polypeptides (Mr 6101 and Mr 6079) were achieved by a two-step extraction procedure of chromatophores using in the first step chloroform/methanol containing 0.1M ammonium acetate. Following Sephadex LH-60 chromatography of this first extract a light-harvesting polypeptide (B 870-alpha) was isolated and its complete amino acid sequence was determined (R. Brunisholz et al. (1981) FEBS Lett. 129/1, 150-154, B 880-alpha: G. Gogel et al. (1983) Biochim. Biophys. Acta 746, 32-39). Upon reextraction of the chromatophore pellet with chloroform/methanol/ammonium acetate containing in addition acetic acid a second low-molecular-mass polypeptide (B 880-beta of B 870-beta) was generated. The complete amino acid sequences of the chloroform/methanol-insoluble light-harvesting polypeptide of Rs. rubrum S 1 (B 880-beta) and of Rs. rubrum G-9+ (B 870-beta) were determined. They are identical and consist of 54 amino acid residues. The conserved histidine residue within the hydrophobic stretch raises more evidence for ligand complexation of bacteriochlorophyll to this specific histidine residue which therefore possibly plays the key role in pigment-protein interactions. Both polypeptides (B 880-alpha and B 880-beta) are part of the light-harvesting complex B 880 in an apparent ratio of 1:1. Based on the primary structure data a possible arrangement of both light-harvesting polypeptides within the membrane will be discussed.

摘要

研究表明,来自深红红螺菌S1(野生型)的捕光复合物B 880和来自无类胡萝卜素突变体G-9+的B 870主要由一种可溶于有机溶剂(氯仿/甲醇)的多肽和一种不溶于有机溶剂的多肽组成。通过对载色体进行两步提取程序,实现了这两种低分子量多肽(分子量分别为6101和6079)的分离。第一步使用含有0.1M醋酸铵的氯仿/甲醇。对该第一次提取物进行葡聚糖凝胶LH-60层析后,分离出一种捕光多肽(B 870-α),并确定了其完整的氨基酸序列(R. Brunisholz等人,(1981年),《欧洲生物化学学会联合会快报》129/1,150 - 154;B 880-α:G. Gogel等人,(1983年),《生物化学与生物物理学报》746,32 - 39)。用另外含有乙酸的氯仿/甲醇/醋酸铵对载色体沉淀进行再提取时,产生了第二种低分子量多肽(B 880-β或B 870-β)。确定了深红红螺菌S1(B 880-β)和深红红螺菌G-9+(B 870-β)中不溶于氯仿/甲醇的捕光多肽的完整氨基酸序列。它们是相同的,由54个氨基酸残基组成。疏水区域内保守的组氨酸残基为细菌叶绿素与该特定组氨酸残基形成配体复合物提供了更多证据,因此该组氨酸残基可能在色素 - 蛋白质相互作用中起关键作用。两种多肽(B 880-α和B 880-β)以明显1:1的比例成为捕光复合物B 880的一部分。基于一级结构数据,将讨论这两种捕光多肽在膜内可能的排列方式。

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