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首页> 外文期刊>JBIC Journal of Biological Inorganic Chemistry >Analyzing the binding of Co(II)-specific inhibitors to the methionyl aminopeptidases from Escherichia coli and Pyrococcus furiosus
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Analyzing the binding of Co(II)-specific inhibitors to the methionyl aminopeptidases from Escherichia coli and Pyrococcus furiosus

机译:分析Co(II)特异性抑制剂与大肠杆菌和激烈热球菌的甲硫氨酰氨基肽酶的结合

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摘要

Methionine aminopeptidases (MetAPs) represent a unique class of protease that is capable of the hydrolytic removal of an N-terminal methionine residue from nascent polypeptide chains. MetAPs are physiologically important enzymes; hence, there is considerable interest in developing inhibitors that can be used as antiangiogenic and antimicrobial agents. A detailed kinetic and spectroscopic study has been performed to probe the binding of a triazole-based inhibitor and a bestatin-based inhibitor to both Mn(II)- and Co(II)-loaded type-I (Escherichia coli) and type-II (Pyrococcus furiosus) MetAPs. Both inhibitors were found to be moderate competitive inhibitors. The triazole-type inhibitor was found to interact with both active-site metal ions, while the bestatin-type inhibitor was capable of switching its mode of binding depending on the metal in the active site and the type of MetAP enzyme.
机译:蛋氨酸氨基肽酶(MetAP)代表一类独特的蛋白酶,能够从新生多肽链中水解去除N末端甲硫氨酸残基。 MetAP是生理学上重要的酶。因此,对开发可用作抗血管生成和抗微生物剂的抑制剂有相当大的兴趣。已经进行了详细的动力学和光谱学研究,以探测三唑类抑制剂和Bestatin类抑制剂与Mn(II)和Co(II)负载的I型(大肠杆菌)和II型的结合(火球菌)MetAPs。发现两种抑制剂均为中度竞争性抑制剂。发现三唑型抑制剂与两个活性位金属离子相互作用,而Bestatin型抑制剂能够根据活性位中的金属和MetAP酶的类型切换其结合方式。

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