首页> 美国卫生研究院文献>Toxicological Sciences >Tyrosines of Human and Mouse Transferrin Covalently Labeled by Organophosphorus Agents: A New Motif for Binding to Proteins that Have No Active Site Serine
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Tyrosines of Human and Mouse Transferrin Covalently Labeled by Organophosphorus Agents: A New Motif for Binding to Proteins that Have No Active Site Serine

机译:人和小鼠转铁蛋白酪氨酸共价标记的有机磷剂:结合没有活性位点丝氨酸的蛋白质的新母题。

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摘要

The expectation from the literature is that organophosphorus (OP) agents bind to proteins that have an active site serine. However, transferrin, a protein with no active site serine, was covalently modified in vitro by 0.5mM 10-fluoroethoxyphosphinyl-N-biotinamido pentyldecanamide, chlorpyrifos oxon, diisopropylfluorophosphate, dichlorvos, sarin, and soman. The site of covalent attachment was identified by analyzing tryptic peptides in the mass spectrometer. Tyr 238 and Tyr 574 in human transferrin and Tyr 238, Tyr 319, Tyr 429, Tyr 491, and Tyr 518 in mouse transferrin were labeled by OP. Tyrosine in the small synthetic peptide ArgTyrThrArg made a covalent bond with diisopropylfluorophosphate, chlorpyrifos oxon, and dichlorvos at pH 8.3. These results, together with our previous demonstration that albumin and tubulin bind OP on tyrosine, lead to the conclusion that OP bind covalently to tyrosine, and that OP binding to tyrosine is a new OP-binding residue. The OP-reactive tyrosines are activated by interaction with Arg or Lys. It is suggested that many proteins in addition to those already identified may be modified by OP on tyrosine. The extent to which tyrosine modification by OP can occur in vivo and the toxicological implications of such modifications require further investigation.
机译:文献期望有机磷(OP)试剂与具有活性位点丝氨酸的蛋白质结合。然而,转铁蛋白是一种没有活性位点丝氨酸的蛋白质,在体外被0.5mM 10-氟乙氧基膦基-N-生物素亚氨基戊基癸酰胺,毒死ox,异丙基氟磷酸盐,敌敌畏,沙林和梭曼共价修饰。通过在质谱仪中分析胰蛋白酶肽来鉴定共价连接位点。人转铁蛋白中的Tyr 238和Tyr 574以及小鼠转铁蛋白中的Tyr 238,Tyr 319,Tyr 429,Tyr 491和Tyr 518用OP标记。小型合成肽ArgTyrThrArg中的酪氨酸与二异丙基氟磷酸盐,毒死ox oxon和敌敌畏在pH 8.3下形成共价键。这些结果,加上我们先前的证明白蛋白和微管蛋白结合酪氨酸上的OP,得出结论:OP与酪氨酸共价结合,而OP与酪氨酸结合是一个新的OP结合残基。 OP反应性酪氨酸通过与Arg或Lys相互作用而被激活。有人提出,除了已经鉴定出的蛋白质外,许多蛋白质还可以通过酪氨酸上的OP修饰。 OP对酪氨酸的修饰可在体内发生的程度以及此类修饰的毒理学含义需要进一步研究。

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