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A Novel Potential Biomarker on Y263 Site in Human Serum Albumin Poisoned by Six Nerve Agents

机译:六个神经试剂中毒y263位点上的一种新型潜在生物标志物

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Albumin is a new biomarker of organophosphorus compounds (OPs) and nerve agents (OPNAs) for retrospective verification. Recent studies on OPs adducts show that amino acid residues can covalently bind to OPs and OPNAs. In this article, after being incubated with soman, sarin, cyclosarin, VX, ethyl tabun, and propyl tabun, human serum albumin (HSA) is analyzed by quadrupole-Orbitrap mass spectrometer (Q Exactive LC-MS/MS). In addition to the three known phosphonylated sites, six new sites modified by OPNAs are detected. To identify the most reactive residue, we calculate the area ratio of the modified peptides to the whole peptides. The result demonstrates that tyrosine 263 (Y263) in peptide Y(263)ICENQDSISSK, which has been poisoned with six kinds of nerve agents, possesses the highest reactivity. The structure characteristics based on molecular simulation provide a theoretical evidence for the reactivity of the nine binding sites. It suggests that Y263 also has the potential to be used as a biomarker to detect OPNAs exposure, and the presented Q Exactive LC-MS/MS method might be of relevance for the verification of new phosphonylated sites.
机译:白蛋白是用于回顾性验证的有机磷化合物(OPS)和神经剂(OPNA)的新生物标志物。最近对OPS加合物的研究表明,氨基酸残基可与OPS和OPAs共价结合。在本文中,通过四氧氢吲哚-orbitrap质谱仪(Q.辐射LC-MS / MS)分析人血清白蛋白(HSA)孵育后。除了三个已知的膦化的位点之外,检测由OPNAS修饰的六个新位点。为了鉴定最活力的残余物,我们计算改性肽与整个肽的面积比。结果表明,肽Y(263)Icenqdsiss的酪氨酸263(Y263),其被六种神经剂中毒,具有最高的反应性。基于分子模拟的结构特性为九个结合位点的反应性提供了理论上的证据。它表明,Y263还具有用作检测OPNA暴露的生物标志物的可能性,并且所呈现的Q辐射LC-MS / MS方法可能具有相关性验证新的膦化的位点。

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