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人芳基磺基转移酶的结构表征

Structural characterization of human aryl sulphotransferases.

作者信息

Brix L A, Duggleby R G, Gaedigk A, McManus M E

机构信息

Department of Physiology and Pharmacology, University of Queensland, Brisbane, Queensland, 4072, Australia.

出版信息

Biochem J. 1999 Jan 15;337 ( Pt 2)(Pt 2):337-43.

Abstract

Human aryl sulphotransferase (HAST) 1, HAST3, HAST4 and HAST4v share greater than 90% sequence identity, but vary markedly in their ability to catalyse the sulphonation of dopamine and p-nitrophenol. In order to investigate the amino acid(s) involved in determining differing substrate specificities of HASTs, a range of chimaeric HAST proteins were constructed. Analysis of chimaeric substrate specificities showed that enzyme affinities are mainly determined within the N-terminal end of each HAST protein, which includes two regions of high sequence divergence, termed Regions A (amino acids 44-107) and B (amino acids 132-164). To investigate the substrate-binding sites of HASTs further, site-directed mutagenesis was performed on HAST1 to change 13 individual residues within these two regions to the HAST3 equivalent. A single amino acid change in HAST1 (A146E) was able to change the specificity for p-nitrophenol to that of HAST3. The substrate specificity of HAST1 towards dopamine could not be converted into that of HAST3 with a single amino acid change. However, compared with wild-type HAST1, a number of the mutations resulted in interference with substrate binding, as shown by elevated Ki values towards the co-substrate 3'-phosphoadenosine 5'-phosphosulphate, and in some cases loss of activity towards dopamine. These findings suggest that a co-ordinated change of multiple amino acids in HAST proteins is needed to alter the substrate specificities of these enzymes towards dopamine, whereas a single amino acid at position 146 determines p-nitrophenol affinity. A HAST1 mutant was constructed to express a protein with four amino acids deleted (P87-P90). These amino acids were hypothesized to correspond to a loop region in close proximity to the substrate-binding pocket. Interestingly, the protein showed substrate specificities more similar to wild-type HAST3 than HAST1 and indicates an important role of these amino acids in substrate binding.

摘要

人芳基磺基转移酶(HAST)1、HAST3、HAST4和HAST4v的序列同一性大于90%,但它们催化多巴胺和对硝基苯酚磺化的能力却有显著差异。为了研究决定HASTs不同底物特异性的氨基酸,构建了一系列嵌合HAST蛋白。对嵌合底物特异性的分析表明,酶的亲和力主要由每个HAST蛋白的N末端决定,该末端包括两个序列差异较大的区域,称为A区(氨基酸44 - 107)和B区(氨基酸132 - 164)。为了进一步研究HASTs的底物结合位点,对HAST1进行了定点诱变,将这两个区域内的13个单个残基替换为HAST3的对应残基。HAST1中的单个氨基酸变化(A146E)能够将对硝基苯酚的特异性改变为HAST3的特异性。HAST1对多巴胺的底物特异性不能通过单个氨基酸变化转变为HAST3的特异性。然而,与野生型HAST1相比,一些突变导致对底物结合的干扰,表现为对共底物3'-磷酸腺苷5'-磷酸硫酸的Ki值升高,在某些情况下对多巴胺的活性丧失。这些发现表明,需要HAST蛋白中多个氨基酸的协同变化来改变这些酶对多巴胺的底物特异性,而第146位的单个氨基酸决定了对硝基苯酚的亲和力。构建了一个HAST1突变体以表达缺失四个氨基酸(P87 - P90)的蛋白。这些氨基酸被推测对应于靠近底物结合口袋的一个环区域。有趣的是,该蛋白显示出比HAST1更类似于野生型HAST3的底物特异性,表明这些氨基酸在底物结合中起重要作用。

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