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菠菜质体蓝素的电子传递位点。

The electron-transfer site of spinach plastocyanin.

作者信息

Rush J D, Levine F, Koppenol W H

机构信息

Department of Chemistry, Louisiana State University, Baton Rouge 70803.

出版信息

Biochemistry. 1988 Aug 9;27(16):5876-84. doi: 10.1021/bi00416a009.

Abstract

Two sites for electron transfer have been proposed for plastocyanin: one near the copper ion and the other close to the acid patch formed by residues 42-45. Calculations of electrostatic properties of spinach plastocyanin and ionic strength dependences of electron-transfer reactions of this protein have been used to distinguish between these two sites. Calculations show that the electric potential field of spinach plastocyanin is highly asymmetric and that the protein has a dipole moment of 360 D. The negative end of the dipole axis emerges between the negative patches formed by residues 42-45, which is though to be the cation binding site, and residues 59-61. The angles between the dipole vector and vectors from the center of mass to the copper ion and to the acid patch are 90 degrees and 30 degrees, respectively. The angle between the dipole vector and a line from the center of mass to the site of electron transfer is evaluated from the ionic strength dependence of electron-transfer rates at pH 7.8 with the help of equations developed by Van Leeuwen et al. [van Leeuwen, J.W., Mofers, F.J.M., & Veerman, E.C.I. (1981) Biochim. Biophys. Acta 635, 434] and Van Leeuwen [van Leeuwen, J.W. (1983) Biochim. Biophys. Acta 743, 408]. The angles found are 85 degrees, 110 degrees, and 75 +/- 15 degrees for reactions with tris(1,10-phenanthroline)cobalt(III), hexacyanoferrate(III), and ferrocytochrome c, respectively. The electric potential field calculations suggest that the hexacyanoferrate(III) interaction angle corresponds to a unique site of minimum repulsion at the hydrophobic region of the protein surface, close to the copper ion.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

人们提出了质体蓝素的两个电子转移位点

一个靠近铜离子,另一个靠近由42 - 45位残基形成的酸性区域。通过计算菠菜质体蓝素的静电性质以及该蛋白质电子转移反应的离子强度依赖性,来区分这两个位点。计算表明,菠菜质体蓝素的电势场高度不对称,且该蛋白质的偶极矩为360 D。偶极轴的负端出现在由42 - 45位残基形成的负性区域与59 - 61位残基之间,后者被认为是阳离子结合位点。偶极向量与从质心到铜离子以及到酸性区域的向量之间的夹角分别为90度和30度。借助Van Leeuwen等人[van Leeuwen, J.W., Mofers, F.J.M., & Veerman, E.C.I. (1981) Biochim. Biophys. Acta 635, 434]和Van Leeuwen [van Leeuwen, J.W. (1983) Biochim. Biophys. Acta 743, 408]所推导的公式,根据pH 7.8时电子转移速率的离子强度依赖性,评估偶极向量与从质心到电子转移位点的连线之间的夹角。对于与三(1,10 - 菲咯啉)钴(III)、铁氰化铁(III)和亚铁细胞色素c的反应,所得到的夹角分别为85度、110度和75±15度。电势场计算表明,铁氰化铁(III)的相互作用角对应于蛋白质表面疏水区域靠近铜离子处一个独特的最小排斥位点。(摘要截短于250字)

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