胞色素cbb3氧化酶i亚基5个保守残基的定点诱变

Mehmet Ozturk, Ekrem Gurel, Nicholas J Watmough, Sevnur Mandaci
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引用次数: 7

摘要

细胞色素cbb(3)氧化酶是血红素-铜氧化酶超家族的一员,它催化分子氧还原为水,并以质子梯度的形式保存释放的能量。比较不同种类血红素-铜氧化酶I亚基的氨基酸序列表明,跨膜螺旋VIII和跨膜螺旋IX与X之间的环含有5个高度保守的极性残基;Ser333, Ser340, Thr350, Asn390和Thr394。为了确定这些保守氨基酸与荚膜红杆菌中cbb(3)氧化酶的活性和组装之间的关系,这五个保守氨基酸中的每一个都通过定点诱变取代了丙氨酸。这些突变对催化活性的影响是通过NADI平板试验和耗氧量的测量来确定的。这些突变对cbb(3)氧化酶结构完整性的影响通过染色质膜的SDS-PAGE分析和TMBZ染色来确定。结果表明,Asn390Ala突变导致酶活性完全丧失,Ser333Ala突变显著降低酶活性。剩余的突变体导致催化活性的部分丧失。除Asn390Ala外,所有突变体酶均在荚膜中正确组装并稳定存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Site-directed mutagenesis of five conserved residues of subunit i of the cytochrome cbb3 oxidase in Rhodobacter capsulatus.

Cytochrome cbb(3) oxidase is a member of the heme-copper oxidase superfamily that catalyses the reduction of molecular oxygen to the water and conserves the liberated energy in the form of a proton gradient. Comparison of the amino acid sequences of subunit I from different classes of heme-copper oxidases showed that transmembrane helix VIII and the loop between transmembrane helices IX and X contain five highly conserved polar residues; Ser333, Ser340, Thr350, Asn390 and Thr394. To determine the relationship between these conserved amino acids and the activity and assembly of the cbb(3) oxidase in Rhodobacter capsulatus, each of these five conserved amino acids was substituted for alanine by site-directed mutagenesis. The effects of these mutations on catalytic activity were determined using a NADI plate assay and by measurements of the rate of oxygen consumption. The consequence of these mutations for the structural integrity of the cbb(3) oxidase was determined by SDS-PAGE analysis of chromatophore membranes followed by TMBZ staining. The results indicate that the Asn390Ala mutation led to a complete loss of enzyme activity and that the Ser333Ala mutation decreased the activity significantly. The remaining mutants cause a partial loss of catalytic activity. All of the mutant enzymes, except Asn390Ala, were apparently correctly assembled and stable in the membrane of the R. capsulatus.

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