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嗜温嗜硫菌高电位铁硫蛋白的一级结构与热变性的关系

Primary structure of Chromatium tepidum high-potential iron-sulfur protein in relation to thermal denaturation.

作者信息

Moulis J M, Scherrer N, Gagnon J, Forest E, Petillot Y, Garcia D

机构信息

Département de Biologie Moléculaire et Structurale, Centre d'Etudes Nucléaires de Grenoble, France.

出版信息

Arch Biochem Biophys. 1993 Aug 15;305(1):186-92. doi: 10.1006/abbi.1993.1409.

Abstract

A high-potential ferredoxin (HiPIP) has been purified from the thermophilic purple sulfur bacterium Chromatium tepidum. Most of the properties of this protein, including absorption and electron paramagnetic resonance spectra as well as redox potential, are identical to those of the similar protein isolated from the mesophilic organism Chromatium vinosum. The similarity extends to the amino acid sequences, which share 74 of the 83 residues composing the primary structure of C. tepidum HiPIP. The latter has been determined by sequencing overlapping peptides and precisely measuring the molecular mass of the holoprotein (9136 Da) by electrospray ionization mass spectrometry. The most significant difference between these sequences involves a stretch of 8 amino acids, which is shortened by two residues and notably changed in C. tepidum HiPIP. This region had been identified in the three-dimensional structure of C. vinosum HiPIP as both a link between two strands of a twisted beta sheet coordinating the [4Fe-4S] cluster and an area of strong interaction of the molecule with the solvent. These data have been used to discuss the molecular basis for the slightly improved thermal stability of C. tepidum HiPIP, as compared to C. vinosum HiPIP. Based on the physiological differences distinguishing C. tepidum from other small-sized Chromatiaceae, the presence of an abundant HiPIP in C. tepidum indicates that involvement as electron acceptor for the previously proposed thiosulfate oxidizing activity in C. vinosum may not be the sole function in all purple sulfur bacteria.

摘要

一种高电位铁氧化还原蛋白(HiPIP)已从嗜热紫色硫细菌嗜温色杆菌中纯化出来。该蛋白质的大多数特性,包括吸收光谱、电子顺磁共振光谱以及氧化还原电位,都与从中温生物葡萄酒色嗜色菌中分离出的类似蛋白质相同。这种相似性延伸到氨基酸序列,嗜温色杆菌HiPIP的一级结构由83个残基组成,其中74个与葡萄酒色嗜色菌的相同。嗜温色杆菌HiPIP的一级结构是通过对重叠肽段进行测序,并用电喷雾电离质谱精确测量全蛋白的分子量(9136 Da)来确定的。这些序列之间最显著的差异涉及一段8个氨基酸的区域,在嗜温色杆菌HiPIP中该区域缩短了两个残基,且有明显变化。在葡萄酒色嗜色菌HiPIP的三维结构中,这个区域被确定为扭曲β折叠的两条链之间的连接,用于配位[4Fe-4S]簇,也是分子与溶剂强烈相互作用的区域。这些数据已被用于讨论与葡萄酒色嗜色菌HiPIP相比,嗜温色杆菌HiPIP热稳定性略有提高的分子基础。基于区分嗜温色杆菌与其他小型着色菌科的生理差异,嗜温色杆菌中存在丰富的HiPIP表明,在葡萄酒色嗜色菌中,HiPIP作为先前提出的硫代硫酸盐氧化活性的电子受体,可能并非所有紫色硫细菌中的唯一功能。

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