首页> 外文期刊>Journal of the American Chemical Society >SITE-DIRECTED MUTAGENESIS ON (SERINE) CARBOXYPEPTIDASE Y FROM YEAST - THE SIGNIFICANCE OF THR60 AND MET398 IN HYDROLYSIS AND AMINOLYSIS REACTIONS
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SITE-DIRECTED MUTAGENESIS ON (SERINE) CARBOXYPEPTIDASE Y FROM YEAST - THE SIGNIFICANCE OF THR60 AND MET398 IN HYDROLYSIS AND AMINOLYSIS REACTIONS

机译:酵母在(丝氨酸)羧肽酶Y上的定向诱变-THR60和MET398在水解和酰胺分解反应中的意义

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In (serine) carboxypeptidase Y, the flexible side chain of Met398 forms one side of the S-1' binding pocket and the beta- and gamma-carbon atoms of Thr60 form the opposite side. Met398 has been substituted with the residues Gly, Ala, Val, Ile, Leu, Phe, and Tyr while Thr60 has been substituted with the residues Ala, Val, Leu, Met, Phe, and Tyr by site-directed mutagenesis, and the resulting enzymes have been characterized with respect to their P-1' substrate preferences using the substrate series FA-Phe-Xaa-OH (Xaa = Gly, Ala, Val, or Leu) and FA-Ala-Yaa-OH (Yaa = Leu, Gin, Glu, Lys, or Arg). The results show that Met398 is much more important for transition state stabilization than Thr60 although it appears that the selected nonbulky amino acid residue (Thr) at position 60 is important for high k(cat) values. The results further suggest that bulky amino acid side chains at position 398 are able to adjust the size of the S-1' pocket such that favorable interactions with the substrate can be obtained with even small P-1' side chains, e.g., Gly. Accordingly, the hydrolysis of substrates with bulky/hydrophobic P-1' side chains is less dependent on the nature of the amino acid residue at position 398 than that of a substrate with a nonbulky P-1' side chain. The three-dimensional structure of the mutant enzyme E65A + E145A has been determined, and it provides support for the high mobility of the Met398 side chain. In transpeptidation reactions the substitutions at position 398 also influence the interactions between the binding pocket and the amino acid leaving group as well as the added nucleophile competing with water in the deacylation reaction. Much higher aminolysis was obtained with some of the mutant enzymes, presumably due to a changed accessibility of water to the acyl-enzyme intermediate while the nucleophile/leaving group is bound at the S-1' binding site. [References: 25]
机译:在(丝氨酸)羧肽酶Y中,Met398的柔性侧链形成S-1'结合口袋的一侧,而Thr60的β-和γ-碳原子形成相反的一侧。通过定点诱变,Met398已被残基Gly,Ala,Val,Ile,Leu,Phe和Tyr取代,而Thr60已被残基Ala,Val,Leu,Met,Phe和Tyr取代,使用底物系列FA-Phe-Xaa-OH(Xaa = Gly,Ala,Val或Leu)和FA-Ala-Yaa-OH(Yaa = Leu,杜松子酒,谷氨酸,赖氨酸或精氨酸)。结果表明,Met398对于过渡态稳定比Thr60更重要,尽管看起来在60位选择的非大块氨基酸残基(Thr)对于高k(cat)值很重要。结果进一步表明,在398位的大体积氨基酸侧链能够调节S-1′口袋的大小,从而即使是很小的P-1′侧链,例如Gly,也能获得与底物的有利相互作用。因此,具有大的/疏水的P-1'侧链的底物的水解比具有不庞大的P-1'侧链的底物的水解较少依赖于398位氨基酸残基的性质。已确定了突变酶E65A + E145A的三维结构,它为Met398侧链的高迁移率提供了支持。在转肽反应中,第398位的取代也影响结合口袋与氨基酸离去基团之间的相互作用,以及在脱酰反应中与水竞争的亲核试剂。用某些突变酶获得更高的氨解,大概是由于亲核试剂/离去基团在S-1'结合位点结合时水对酰基酶中间体的可及性发生了变化。 [参考:25]

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