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首页> 外文期刊>Pigment cell & melanoma research >Inulavosin and its benzo-derivatives, melanogenesis inhibitors, target the copper loading mechanism to the active site of tyrosinase
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Inulavosin and its benzo-derivatives, melanogenesis inhibitors, target the copper loading mechanism to the active site of tyrosinase

机译:Inulavosin及其苯并衍生物(黑色素生成抑制剂)将铜负载机制靶向酪氨酸酶的活性位点

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摘要

Tyrosinase, a melanosomal membrane protein containing copper, is a key enzyme for melanin synthesis in melanocytes. Inulavosin inhibits melanogenesis by enhancing a degradation of tyrosinase in lysosomes. However, the mechanism by which inulavosin redirects tyrosinase to lysosomes is yet unknown. The analyses of structure–activity relationship of inulavosin and its benzo-derivatives reveal that the hydroxyl and the methyl groups play a critical role in their inhibitory activity. Intriguingly, the docking studies to tyrosinase suggest that the compounds showing inhibitory activity bind through hydrophobic interactions to the cavity of tyrosinase below which the copper-binding sites are located. This cavity is proposed to be required for the association with a chaperon that assists in copper loading to tyrosinase in Streptomyces antibioticus. Inulavosin and its benzoderivatives may compete with the copper chaperon and result in a lysosomal mistargeting of apo-tyrosinase that has a conformational defect.
机译:酪氨酸酶是一种含铜的黑素体膜蛋白,是黑色素细胞中黑色素合成的关键酶。 inulavosin通过增强溶酶体中酪氨酸酶的降解来抑制黑色素生成。但是,神经鞘内毒素将酪氨酸酶重定向至溶酶体的机制尚不清楚。对inulavosin及其苯并衍生物的构效关系的分析表明,羟基和甲基在其抑制活性中起关键作用。有趣的是,对酪氨酸酶的对接研究表明,显示抑制活性的化合物通过疏水相互作用与酪氨酸酶的空腔结合,铜结合位点位于空腔的下方。建议该腔与陪伴剂结合在一起,陪伴剂可协助铜负载到抗生素链霉菌中的酪氨酸酶上。 Inulavosin及其苯并衍生物可能与铜伴侣竞争,并导致具有构象缺陷的脱辅基酪氨酸酶的溶酶体错靶。

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