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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Protein stability and mutations in the axial methionine loop of a minimal cytochrome c
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Protein stability and mutations in the axial methionine loop of a minimal cytochrome c

机译:最小细胞色素c的轴向蛋氨酸环中的蛋白质稳定性和突变

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The minimal mono-heme ferricytochrome c from Bacillus pasteurii, containing 71 amino acids, has been further investigated through mutagenesis of different positions in the loop containing the iron ligand Met71. These mutations have been designed to sample different aspects of the loop structure, in order to obtain insights into the determinants of the stability of the iron(III) environment. In particular, positions 68, 72 and 75 have been essayed. Gln68 has been mutated to Lys to provide a suitable alternate ligand that can displace Met71 under denaturing conditions. Pro72 has been mutated to Gly and Ala to modify the range of allowed backbone conformations. Ile75, which is in van der Waals contact with Met71 and partly shields a long-lived water molecule in a protein cavity, has been substituted by Val and Ala to affect the network of inter-residue interactions around the metal site. The different contributions of the above amino acids to protein parameters such as structure, redox potential and the overall stability against unfolding with guanidinium hydrochloride are analyzed. While the structure remains essentially the same, the stability decreases with mutations. The comparison with mitochondrial c-type cytochromes is instructive.
机译:通过诱变含有铁配体Met71的环中不同位置的诱变作用,进一步研究了巴斯德芽孢杆菌中最小的单血红素铁色素c,其含有71个氨基酸。设计这些突变是为了对环结构的不同方面进行采样,以便深入了解铁(III)环境稳定性的决定因素。特别地,已经提出了位置68、72和75。 Gln68已突变为Lys,以提供合适的替代配体,该配体可以在变性条件下取代Met71。 Pro72已被突变为Gly和Ala,以修饰允许的骨架构象范围。 Ile75与Met71处于范德华斯接触,部分屏蔽了蛋白腔中的长寿命水分子,已被Val和Ala取代,从而影响金属位点之间残基间相互作用的网络。分析了上述氨基酸对蛋白质参数如结构,氧化还原电势和对盐酸胍解折叠的整体稳定性的不同贡献。虽然结构基本保持不变,但稳定性会随着突变而降低。与线粒体c型细胞色素的比较具有指导意义。

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