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Role of disulfide bond of arylsulfate sulfotransferase in the catalytic activity.

机译:芳基硫酸盐磺基转移酶的二硫键在催化活性中的作用。

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Bacterial arylsulfate sulfotransferase (ASST) catalyzes the transfer of sulfate group from a phenyl sulfate ester to a phenolic acceptor. The promoter region and the transcription start sites of Enterobacter amnigenus astA have been determined by primer extension analysis. Northern blot analysis resolved two mRNA species with lengths of 3.3 and 2.0 kb, which correspond to the distances between the transcriptional initiation sites and the two inverted repeat sequences (IRSs). By length, the 3.3 kb RNA could comprise the three-gene (astA with dsbA and dsbB) operon. ASST has three highly conserved cysteine residues. Reducing and nonreducing SDS-PAGE and activity staining showed that disulfide bond is needed for the activity of the enzyme. To identify the cysteine residues responsible for the disulfide bond formation, a series of Cys to Ser mutants has been constructed and the enzymatic activity was measured. Based on the results, we assumed that the first cysteine (Cys349) might be involved in disulfide bond mainly with the second cysteine (Cys445) and result in active conformation.
机译:细菌芳基硫酸盐磺基转移酶(ASST)催化硫酸根基团从硫酸苯酯转移到酚类受体上。羊肠杆菌astA的启动子区域和转录起始位点已通过引物延伸分析确定。 Northern印迹分析解析了两个mRNA种类,其长度分别为3.3和2.0 kb,分别与转录起始位点和两个反向重复序列(IRS)之间的距离相对应。从长度上看,3.3 kb RNA可以包含三个基因(带有dsbA和dsbB的astA)操纵子。 ASST具有三个高度保守的半胱氨酸残基。还原和非还原SDS-PAGE以及活性染色表明,酶的活性需要二硫键。为了鉴定导致二硫键形成的半胱氨酸残基,已经构建了一系列从Cys到Ser的突变体,并测量了酶活性。根据结果​​,我们假设第一个半胱氨酸(Cys349)可能主要与第二个半胱氨酸(Cys445)参与二硫键,并导致活性构象。

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