首页> 外文期刊>The Biochemical Journal >An amino acid at position 142 in nitrilase from Rhodococcus rhodochrous ATCC 33278 determines the substrate specificity for aliphatic and aromatic nitriles.
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An amino acid at position 142 in nitrilase from Rhodococcus rhodochrous ATCC 33278 determines the substrate specificity for aliphatic and aromatic nitriles.

机译:来自红球红球菌ATCC 33278的腈水解酶中142位的氨基酸决定了脂族和芳族腈的底物特异性。

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摘要

Nitrilase from Rhodococcus rhodochrous ATCC 33278 hydrolyses both aliphatic and aromatic nitriles. Replacing Tyr-142 in the wild-type enzyme with the aromatic amino acid phenylalanine did not alter specificity for either substrate. However, the mutants containing non-polar aliphatic amino acids (alanine, valine and leucine) at position 142 were specific only for aromatic substrates such as benzonitrile, m-tolunitrile and 2-cyanopyridine, and not for aliphatic substrates. These results suggest that the hydrolysis of substrates probably involves the conjugated pi-electron system of the aromatic ring of substrate or Tyr-142 as an electron acceptor. Moreover, the mutants containing charged amino acids such as aspartate, glutamate, arginine and asparagine at position 142 displayed no activity towards any nitrile, possibly owing to the disruption of hydrophobic interactions with substrates. Thus aromaticity of substrate or amino acid at position 142 in R. rhodochrous nitrilase is required for enzyme activity.
机译:来自杜鹃红球菌ATCC 33278的腈水解酶水解脂族和芳族腈。用芳香族氨基酸苯丙氨酸代替野生型酶中的Tyr-142不会改变对任一底物的特异性。然而,在142位上含有非极性脂族氨基酸(丙氨酸,缬氨酸和亮氨酸)的突变体仅对芳香族底物如苄腈,间甲苯胺和2-氰基吡啶具有特异性,对脂肪族底物不具有特异性。这些结果表明,底物的水解可能涉及底物的芳香环或作为电子受体的Tyr-142的共轭π电子体系。而且,在142位含有带电荷的氨基酸如天冬氨酸,谷氨酸,精氨酸和天冬酰胺的突变体对任何腈都没有活性,这可能是由于与底物的疏水性相互作用的破坏。因此,杜鹃红腈水解酶中第142位的底物或氨基酸的芳香性对于酶活性是必需的。

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