首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Histidine residues at the copper-binding site in human tyrosinase are essential for its catalytic activities
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Histidine residues at the copper-binding site in human tyrosinase are essential for its catalytic activities

机译:人酪氨酸酶中铜结合位点的组氨酸残基对其催化活性至关重要

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Tyrosinase is a copper-binding enzyme involved in melanin biosynthesis. However, the detailed structure of human tyrosinase has not yet been solved, along with the identification of the key sites responsible for its catalytic activity. We used site-directed mutagenesis to identify the residues critical for the copper binding of human tyrosinase. Seven histidine mutants in the two copper-binding sites were generated, and catalytic activities were characterised. The tyrosine hydroxylase activities of the CuA site mutants were approximately 50% lower than those of the wild-type tyrosinase, while the dopa oxidation activities of the mutants were not significantly different from that of wild-type tyrosinase. By contrast, mutations at CuB significantly decreased both tyrosine hydroxylation and dopa oxidation activities, confirming that the catalytic sites for these two activities are at least partially distinct. These findings provide a useful resource for further structural determination and development of tyrosinase inhibitors in the cosmetic and pharmaceutical industries.
机译:酪氨酸酶是参与黑色素生物合成的铜结合酶。然而,人酪氨酸酶的详细结构尚未解决,以及鉴定负责其催化活性的关键部位。我们使用定向诱变的诱变来鉴定对人酪氨酸酶的铜结合至关重要的残留物。产生两个铜结合位点中的七个组氨酸突变体,并表征了催化活性。 CUA位点突变体的酪氨酸羟化酶活性比野生型酪氨酸酶低约50%,而突变体的多巴氧化活性与野生型酪氨酸酶的多巴氧化活性没有显着差异。相比之下,幼崽的突变显着降低了酪氨酸羟基和多脂盐氧化活性,证实这两种活性的催化位点至少是部分不同的。这些发现提供了一种有用的资源,可用于化妆品和制药行业酪氨酸酶抑制剂的进一步结构测定和开发。

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