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酵母同工酶-1-细胞色素c第82位突变的电化学、动力学及圆二色性结果

Electrochemical, kinetic, and circular dichroic consequences of mutations at position 82 of yeast iso-1-cytochrome c.

作者信息

Rafferty S P, Pearce L L, Barker P D, Guillemette J G, Kay C M, Smith M, Mauk A G

机构信息

Department of Biochemistry, University of British Columbia, Vancouver, Canada.

出版信息

Biochemistry. 1990 Oct 9;29(40):9365-9. doi: 10.1021/bi00492a009.

Abstract

Replacement of Phe-82 in yeast iso-1-cytochrome c with Tyr, Leu, Ile, Ser, Ala, and Gly produces a gradation of effects on (1) the reduction potential of the protein, (2) the rate of reaction with Fe(EDTA)2-, and (3) the CD spectra of the ferricytochromes in the Soret region under conditions where contributions from the alkaline forms of these proteins are absent. The reduction potential of cytochrome c is lowered by as little as 10 mV (Tyr-82) or by as much as 43 mV (Gly-82; pH 6.0) as the result of these substitutions. The second-order rate constants for reduction of these cytochromes range from a low of 6.20 (2) x 10(4) for the Tyr-82 variant to a high of 14.8 x 10(4) M-1 s-1 for the Ser-82 variant [pH 6.0, 25 degrees C, mu = 0.1 M (sodium phosphate)]. Analysis of these rates by use of relative Marcus theory produces values of k11corr that range from 10.9 M-1 s-1 for the wild-type protein to 190 M-1 s-1 for the Gly-82 mutant [25 degrees C, mu = 0.1 M, pH 6.0 (sodium phosphate)]. Reinvestigation of the effect of substituting Phe-82 by a Tyr residue on the CD spectrum of the protein now reveals little alteration of the intense, negative Cotton effect in the Soret CD spectrum of ferricytochrome c. On the other hand, substitution of nonaromatic residues of various sizes at this position results in loss of this spectroscopic feature, consistent with previous findings.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

将酵母同工酶-1-细胞色素c中的苯丙氨酸-82分别替换为酪氨酸、亮氨酸、异亮氨酸、丝氨酸、丙氨酸和甘氨酸,会对以下方面产生一系列影响:(1)蛋白质的还原电位;(2)与Fe(EDTA)2-的反应速率;(3)在排除这些蛋白质碱性形式贡献的条件下,高铁细胞色素在索雷特区域的圆二色光谱。由于这些取代,细胞色素c的还原电位降低幅度小至10 mV(酪氨酸-82),大至43 mV(甘氨酸-82;pH 6.0)。这些细胞色素还原的二级速率常数范围从酪氨酸-82变体的低至6.20(2)×10(4),到丝氨酸-82变体的高至14.8×10(4) M-1 s-1[pH 6.0,25℃,μ = 0.1 M(磷酸钠)]。使用相对马库斯理论分析这些速率,得到的k11corr值范围从野生型蛋白质的10.9 M-1 s-1到甘氨酸-82突变体的190 M-1 s-1[25℃,μ = 0.1 M,pH 6.0(磷酸钠)]。现在对将苯丙氨酸-82替换为酪氨酸残基对蛋白质圆二色光谱的影响进行重新研究,结果显示高铁细胞色素c的索雷特圆二色光谱中强烈的负科顿效应几乎没有改变。另一方面,在该位置取代不同大小非芳香族残基会导致这一光谱特征消失,这与先前的发现一致。(摘要截短于250字)

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