羧基肽酶Y结合位点上半胱氨酸残基的定点诱变化学修饰。

L M Bech, K Breddam
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引用次数: 17

摘要

结果表明,位点诱变可以成功地与化学修饰相结合,产生具有改变性质的酶衍生物。将位于羧肽酶Y S1′结合位点的甲硫基残基替换为半胱氨酸残基,并用各种烷基化和硫代烷基化试剂对突变酶进行分离和修饰。突变体羧肽酶Y用phenacyl bromide和benzyl methyl ethiolsul磺酸等大体积试剂处理后,对P1'位置上有大体积离去基的底物(即-OBzl、-Val-NH2和氨基酸(除了-Gly-OH))的活性急剧降低,而在该位置上有小体积离去基的底物(即-OMe和-NH2)的水解速率增加。正电荷的存在,加上一个庞大的基团,对具有大离去基的底物的活性有进一步的不利影响,而对具有小离去基的底物的活性则不受这个基团的影响。用甲乙硫磺酸苄酯和甲乙硫磺酸甲酯对突变酶进行修饰得到的衍生物分别在肽酰胺脱酰胺和肽合成反应中有效。
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Chemical modifications of a cysteinyl residue introduced in the binding site of carboxypeptidase Y by site-directed mutagenesis.

It is demonstrated that site-directed mutagenesis successfully can be combined with chemical modification creating enzyme derivatives with altered properties. A methionyl residue located in the S1' binding site of carboxypeptidase Y was replaced by a cysteinyl residue and the mutant enzyme was isolated and modified with various alkylating and thioalkylating reagents. Treatment of the mutant carboxypeptidase Y with bulky reagents like phenacyl bromide and benzyl methanethiolsulfonate caused a drastic reduction in the activity towards substrates with bulky leaving groups in the P1' position, i.e. -OBzl, -Val-NH2 and amino acids (except -Gly-OH), while substrates with small groups in that position, i.e. -OMe and -NH2, were hydrolysed with increased rates. The presence of a positive charge, in addition to a bulky group, had a further adverse effect on the activity towards substrates with large leaving groups, whereas the activity towards those with small leaving groups remained unaffected by such a group. The derivatives obtained by modification of the mutant enzyme with benzyl methanethiolsulfonate and methyl methanethiolsulfonate were effective in deamidations of peptide amides and peptide synthesis reactions, respectively.

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