首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >The inhibition effect of some n-alkyl dithiocarbamates on mushroom tyrosinase.
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The inhibition effect of some n-alkyl dithiocarbamates on mushroom tyrosinase.

机译:一些n-烷基二硫代氨基甲酸酯对蘑菇酪氨酸酶的抑制作用。

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Three new n-alkyl dithiocarbamate compounds, as sodium salts, C4H9NHCS2Na (I), C6H13NHCS2Na (II) and C8H17NHCS2Na (III), were synthesized and examined for inhibition of both cresolase and catecholase activities of mushroom tyrosinase (MT) from a commercial source of Agaricus bisporus in 10 mM phosphate buffer pH 6.8, at 293K using UV spectrophotometry. Caffeic acid and p-coumaric acid were used as natural substrates for the enzyme for the catecholase and cresolase reactions, respectively. Lineweaver-Burk plots showed different patterns of mixed and competitive inhibition for catecholase and cresolase reactions, respectively. These new synthetic compounds can be classified as potent inhibitors of MT due to Ki values of 0.8, 1.0 and 1.8 microM for cresolase inhibitory activity, and also 9.4, 14.5 and 28.1 microM for catecholase inhibitory activity for I, II and III, respectively. They showed a greater potency in the inhibitory effect towards the cresolase activity of MT. Both substrate and inhibitor can be bound to the enzyme with negative cooperativity between the binding sites (alpha > 1) and this negative cooperativity increases with increasing length of the aliphatic tail in these compounds. The inhibition mechanism is presumably related to the chelating of the binuclear coppers at the active site and the different Ki values may be related to different interaction of the aliphatic chains of I, II and III with the hydrophobic pocket in the active site of the enzyme.
机译:合成了三种新的正烷基二硫代氨基甲酸酯化合物,分别为钠盐C4H9NHCS2Na(I),C6H13NHCS2Na(II)和C8H17NHCS2Na(III),并从商业来源获得了对蘑菇酪氨酸酶(MT)的甲酚酶和儿茶酚酶活性的抑制作用。使用紫外分光光度法在293K下于10 mM磷酸盐缓冲液pH 6.8中的双孢蘑菇。咖啡酸和对香豆酸分别用作儿茶酚酶和甲酚酶反应酶的天然底物。 Lineweaver-Burk图分别显示了对儿茶酚酶和甲酚酶反应的混合抑制和竞争抑制模式。这些新合成化合物由于甲酚酶抑制活性的Ki值分别为0.8、1.0和1.8 microM,而对I,II和III的儿茶酚酶抑制活性分别为9.4、14.5和28.1 microM,因此可以归类为MT的有效抑制剂。他们表现出对MT的甲酚酶活性的抑制作用更大的效力。底物和抑制剂都可以在酶结合位点之间具有负协同作用(α> 1)结合到酶上,并且这些负协同作用随着这些化合物中脂肪族尾部长度的增加而增加。推测其抑制机理与活性位点上双核铜的螯合有关,不同的Ki值可能与I,II和III的脂族链与酶活性位点上的疏水口袋的不同相互作用有关。

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