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细胞色素b561催化嗜铬囊泡膜上电子转移的结构基础:cDNA核苷酸序列分析和可见吸收光谱分析

Structural basis for the electron transfer across the chromaffin vesicle membranes catalyzed by cytochrome b561: analyses of cDNA nucleotide sequences and visible absorption spectra.

作者信息

Okuyama E, Yamamoto R, Ichikawa Y, Tsubaki M

机构信息

Department of Biochemistry, Kagawa Medical University, Japan.

出版信息

Biochim Biophys Acta. 1998 Apr 2;1383(2):269-78. doi: 10.1016/s0167-4838(97)00216-1.

Abstract

We isolated cDNA clones for cytochromes b561 from sheep and porcine adrenal medullae using the RT-PCR technique. Comparison of the deduced amino acid sequences of various species showed that there are two fully-conserved regions in this cytochrome. In addition, one methionyl and six histidyl residues (potential heme ligands) are fully-conserved. Based on a plausible structural model in which a polypeptide spans the vesicle membranes six times and holds two heme B molecules, the first conserved sequence (69ALLVYRVFR77) is located on the extravesicular side of an alpha-helical segment and the second one (120SLHSW124) is located in an intravesicular loop connecting two alpha-helical segments, respectively. Consideration of the relative locations of the fully-conserved sequences, and the methionyl and histidyl residues in the model led to a proposal that the first and second conserved sequences are likely to form the binding sites for extravesicular ascorbic acid and intravesicular semidehydroascorbic acid, respectively. A mild alkaline-treatment of purified bovine cytochrome b561 in oxidized state led to a specific loss of an electron-accepting ability from ascorbic acid for a half of the heme center, suggesting a distinct role for each of the two hemes.

摘要

我们使用逆转录聚合酶链反应(RT-PCR)技术从绵羊和猪的肾上腺髓质中分离出细胞色素b561的互补DNA(cDNA)克隆。对不同物种推导的氨基酸序列进行比较表明,这种细胞色素中有两个完全保守的区域。此外,一个甲硫氨酰残基和六个组氨酰残基(潜在的血红素配体)是完全保守的。基于一个合理的结构模型,即一条多肽跨膜六次并结合两个血红素B分子,第一个保守序列(69ALLVYRVFR77)位于α-螺旋段的囊泡外侧,第二个保守序列(120SLHSW124)分别位于连接两个α-螺旋段的囊泡内环中。考虑到模型中完全保守序列以及甲硫氨酰和组氨酰残基的相对位置,我们提出第一个和第二个保守序列可能分别形成囊泡外抗坏血酸和囊泡内半脱氢抗坏血酸的结合位点。对氧化态的纯化牛细胞色素b561进行温和的碱处理,导致一半的血红素中心失去了从抗坏血酸接受电子的能力,这表明两个血红素各自具有独特的作用。

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