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Keggin-type polyoxotungstates as mushroom tyrosinase inhibitors - A speciation study

机译:Keggin型多聚钨酸盐作为蘑菇酪氨酸酶抑制剂-物种研究

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摘要

Mushroom tyrosinase abPPO4 is a commercially relevant polyphenol oxidase and has been being targeted for numerous inhibition studies including polyoxometalates (POMs). In the present work, its diphenolase activity was inhibited at pH 6.8 by a series of structurally related polyoxotungstates (POTs) of the α-Keggin archetype, exhibiting the general formula [Xn+W12O40](8−n)− in order to elucidate charge-dependent activity correlations. Kinetic data were obtained from the dopachrome assay and 183W NMR was applied to obtain crucial insights into the actual Keggin POT speciation in solution, facilitating a straightforward assignment of inhibition effects to the identified POT species. While [PW12O40]3− was completely hydrolyzed to its moderately active lacunary form Hx[PW11O39](7−x)− (Ki = 25.6 mM), [SiW12O40]4− showed the most pronounced inhibition effects with a Ki of 4.7 mM despite of partial hydrolysis to its ineffective lacunary form Hx[SiW11O39](8−x)−. More negative Keggin cluster charges of 5− and 6− generally resulted in preclusion of inhibitory efficacy as well as hydrolysis, but with the Ni-substituted cluster [PW11O39{Ni(H2O)}]5− enzymatic inhibition was clearly restored (Ki = 9.7 mM). The inhibitory capacity of the structurally intact Keggin POTs was found to be inversely correlated to their net charge. The here applied speciation strategy is of utmost importance for any biological POM application to identify the actually active POM species.
机译:蘑菇酪氨酸酶abPPO4是与商业相关的多酚氧化酶,已被广泛用于包括多金属氧酸盐(POMs)在内的多种抑制研究。在目前的工作中,其一系列的结构相关的α-Keggin原型多聚氧钨酸盐(POT)在pH 6.8时抑制了其双酚酶活性,表现出通式[X n + W12O40] ( 8-n)-,以阐明依赖于电荷的活动相关性。动力学数据从多巴色素测定中获得,并且 183 W NMR用于获得溶液中实际Keggin POT形态的关键见解,从而有助于将抑制作用直接分配给已鉴定的POT种类。 [PW12O40] 3-被完全水解为中等活性的腔隙形式Hx [PW11O39] (7-x)-(Ki = 25.6 mM),[SiW12O40] < sup> 4-表现出最明显的抑制作用,Ki为4.7μmM,尽管部分水解为无效的腔隙形式Hx [SiW11O39] (8-x)-。 5−和6−的负Keggin团簇电荷通常会导致抑制效果以及水解作用的排除,但带有Ni取代的团簇[PW11O39 {Ni(H 2 O)}] 5 − 的酶抑制作用(K i = 9.7 mM)。发现结构完整的Keggin POT的抑制能力与其净电荷成反比。对于任何生物学上的POM应用而言,此处应用的物种形成策略对于识别实际具有活性的POM物种至关重要。

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