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The anti-angiogenic agent fumagillin covalently modifies a conserved active-site histidine in the Escherichia coli methionine aminopeptidase

机译:抗血管生成剂富马洁林共价修饰大肠杆菌蛋氨酸蛋氨酸氨基肽酶中保守的活性位点组氨酸

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摘要

Methionine aminopeptidase (MetAP) exists in two forms (type I and type II), both of which remove the N-terminal methionine from proteins. It previously has been shown that the type II enzyme is the molecular target of fumagillin and ovalicin, two epoxide-containing natural products that inhibit angiogenesis and suppress tumor growth. By using mass spectrometry, N-terminal sequence analysis, and electronic absorption spectroscopy we show that fumagillin and ovalicin covalently modify a conserved histidine residue in the active site of the MetAP from Escherichia coli, a type I enzyme. Because all of the key active site residues are conserved, it is likely that a similar modification occurs in the type II enzymes. This modification, by occluding the active site, may prevent the action of MetAP on proteins or peptides involved in angiogenesis. In addition, the results suggest that these compounds may be effective pharmacological agents against pathogenic and resistant forms of E. coli and other microorganisms.
机译:蛋氨酸氨基肽酶(MetAP)以两种形式(I型和II型)存在,两者均从蛋白质中去除N末端甲硫氨酸。先前已经证明II型酶是烟曲霉素和卵磷脂的分子靶标,它们是两种抑制血管生成和抑制肿瘤生长的含环氧化物的天然产物。通过使用质谱,N端序列分析和电子吸收光谱,我们显示了烟曲霉素和卵磷脂共价修饰来自I型大肠杆菌MetAP活性位点中的保守组氨酸残基。因为所有关键的活性位点残基都是保守的,所以II型酶可能发生类似的修饰。通过封闭活性位点,这种修饰可以阻止MetAP对参与血管生成的蛋白质或肽的作用。另外,结果表明这些化合物可能是针对大肠杆菌和其他微生物的致病性和抗性形式的有效药理剂。

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