Farrés J, Wang T T, Cunningham S J, Weiner H
Department of Biochemistry, Purdue University, West Lafayette, Indiana 47907.
Biochemistry. 1995 Feb 28;34(8):2592-8. doi: 10.1021/bi00008a025.
To determine the active site cysteine residue in aldehyde dehydrogenase, we mutated amino acid residues 49, 162, and 302 of recombinantly expressed rat liver mitochondrial (class 2) aldehyde dehydrogenase. The C49A and C162A mutants were fully active tetrameric enzymes, although the C162A mutant was found to be highly unstable. The C302A mutant was also a tetramer and bound coenzyme, but lacked both dehydrogenase and esterase activities. To test for the role of cysteine 302 as a nucleophile, the residue was mutated to a serine, a poor nucleophile. this C302S mutant was active but was a much poorer catalyst, with a kcat/Km value 7 x 10(5) times lower than that of the recombinant native enzyme. Unlike with native enzyme where deacylation is rate limiting, formation of the serine hemiacetal intermediate appeared to be the rate-limiting step. Cysteine 302 is the only strictly conserved cysteine residue among all the available sequences of the aldehyde dehydrogenase superfamily, supporting the role of this residue as the active site nucleophile of aldehyde dehydrogenase.
为了确定醛脱氢酶中的活性位点半胱氨酸残基,我们对重组表达的大鼠肝线粒体(2类)醛脱氢酶的第49、162和302位氨基酸残基进行了突变。C49A和C162A突变体是完全有活性的四聚体酶,尽管发现C162A突变体高度不稳定。C302A突变体也是四聚体且能结合辅酶,但既缺乏脱氢酶活性也缺乏酯酶活性。为了测试半胱氨酸302作为亲核试剂的作用,将该残基突变为亲核性较弱的丝氨酸。这个C302S突变体有活性,但催化能力差得多,其kcat/Km值比重组天然酶低7×10⁵倍。与天然酶中脱酰化是限速步骤不同,丝氨酸半缩醛中间体的形成似乎是限速步骤。半胱氨酸302是醛脱氢酶超家族所有可用序列中唯一严格保守的半胱氨酸残基,这支持了该残基作为醛脱氢酶活性位点亲核试剂的作用。