首页> 外文期刊>Biological chemistry >Studies with lysine N6-hydroxylase. Effect of a mutation in the assumed FAD binding site on coenzyme affinities and on lysine hydroxylating activity.
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Studies with lysine N6-hydroxylase. Effect of a mutation in the assumed FAD binding site on coenzyme affinities and on lysine hydroxylating activity.

机译:用赖氨酸N6-羟化酶进行研究。假定的FAD结合位点突变对辅酶亲和力和赖氨酸羟化活性的影响。

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The proposed FAD binding site of L-lysine N6-hydroxylase (EC 1.14.13.99) exhibits an unusual proline in a position where a highly conserved glycine is found in other FAD dependent hydroxylases. We have studied the role of this proline by mutating it to glycine in [P14G]aerA, which was expressed in Escherichia coli M15-2 and purified to homogeneity. The mutation has marked effects on the affinities of the cofactors FAD and NADPH as well as the substrate, lysine. Compared to the wild-type enzyme, the activity vs. pH profile of the mutant protein indicates a shift of the apparent pK'(a)s (7.8 and 8.7 for wild-type and 6.8 and 7.7 for the P14G-mutant enzyme) and of the activity maximum (pH 8 for wild-type and pH 7 for the P14G-mutant enzyme). While the activity of the mutant enzyme is much lower under conditions found to be optimal for the wild-type enzyme, adjustment of substrate and cofactor concentrations and pH leads to comparable activities for the mutant enzyme. These results suggest that the proline fulfils an important structural role in the proposed FAD binding site.
机译:提议的L-赖氨酸N6-羟化酶(EC 1.14.13.99)的FAD结合位点在其他FAD依赖性羟化酶中发现高度保守的甘氨酸的位置表现出不同寻常的脯氨酸。我们已经研究了脯氨酸在[P14G] aerA中突变为甘氨酸的作用,该蛋白在大肠杆菌M15-2中表达并纯化至均一。该突变对辅助因子FAD和NADPH以及底物赖氨酸的亲和力具有显着影响。与野生型酶相比,突变蛋白的活性与pH值曲线表明表观pK'(a)s发生了变化(野生型为7.8和8.7,P14G突变型酶为6.8和7.7),最大活性(野生型为pH 8,P14G突变酶为pH 7)。尽管在发现对于野生型酶最佳的条件下,突变酶的活性要低得多,但是调节底物和辅因子的浓度以及pH值可以使突变酶具有可比的活性。这些结果表明脯氨酸在提议的FAD结合位点中起重要的结构作用。

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