首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Mono- (Ag, Hg) and di- (Cu, Hg) valent metal ions effects on the activity of jack bean urease. Probing the modes of metal binding to the enzyme
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Mono- (Ag, Hg) and di- (Cu, Hg) valent metal ions effects on the activity of jack bean urease. Probing the modes of metal binding to the enzyme

机译:单价(Ag,Hg)和二价(Cu,Hg)金属离子对菜豆脲酶活性的影响。探索金属与酶的结合方式

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The inhibition of urease by heavy metal ions has been habitually ascribed to the reaction of the ions with enzyme thiol groups, resulting in the formation of mercaptides. To probe the modes of metal binding to the enzyme, in this work the reaction of mono- (Ag, Hg) and di- (Cu, Hg) valent metal ions with jack bean urease was studied. The enzyme was reacted with different concentrations of the metal ions for different periods of times, when its residual activitiy was assayed and thiol content titrated. The titration carried out with DTNB was done to examine the involvement of urease thiol groups in metal ion binding. The binding was further probed by reactivation of the metal ion-enzyme complexes with DTT, EDTA and dilution. The results are discussed in terms of the HSAB concept. In inhibiting urease the metal ions showed a common feature in that they inhibited the enzyme within a comparable micromolar range, and also in that their inhibition was multisite. By contrast, the main distinguishing feature in their action consisted of the involvement of enzyme thiol groups in the reaction. Hg2+ and Hg22+ inhibition was found thoroughly governed by the reaction with the enzyme thiols, and the complete loss of enzyme activity involved all thiols available in the enzyme under non-denaturating conditions. In contrast, Ag+ and Cu2+ ions for the complete inactivation of the enzyme required 53 and 60% of thiols, respectively. Accordingly, Ag+ and Cu2+ binding to functional groups in urease other than thiols, i.e. N- and O-containing groups, cannot be excluded. Based on the reactivation experiments this seems particularly likely for Cu2+, whose concurrent binding to thiols and other groups might distort the architecture of the active site (the mechanism of which remains to be elucidated) resulting in the observed inhibitory effects.
机译:习惯上将重金属离子对脲酶的抑制归因于离子与硫醇酶的反应,从而导致硫醇盐的形成。为了探测金属与酶的结合方式,在这项工作中,研究了单价(Ag,Hg)和二价(Cu,Hg)的金属离子与蚕豆脲酶的反应。当测定其残余活性并滴定硫醇含量时,该酶与不同浓度的金属离子反应不同的时间。用DTNB进行滴定以检查脲酶硫醇基团在金属离子结合中的参与。通过用DTT,EDTA和稀释液重新活化金属离子-酶复合物,进一步探测结合。结果将根据HSAB概念进行讨论。在抑制脲酶中,金属离子表现出一个共同的特征,即它们在相当的微摩尔范围内抑制了酶,而且它们的抑制作用是多位的。相比之下,其作用的主要区别特征在于酶硫醇基团参与了反应。发现Hg2 +和Hg22 +的抑制作用完全由与硫醇酶的反应控制,并且酶活性的完全丧失涉及在非变性条件下酶中所有可用的硫醇。相反,要使酶完全失活,Ag +和Cu2 +离子分别需要53%和60%的硫醇。因此,不能排除与硫醇以外的脲酶中的官能团结合的Ag +和Cu 2+,即含N和O的基团。根据再活化实验,这对于Cu2 +尤为可能,Cu2 +同时与硫醇和其他基团结合可能会扭曲活性位点的结构(其机理尚待阐明),从而导致观察到的抑制作用。

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