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使用串联质谱法对异氰酸酯-肽加合物进行结构解析。

Structural elucidation of isocyanate-peptide adducts using tandem mass spectrometry.

作者信息

Hettick Justin M, Ruwona Tinashe B, Siegel Paul D

机构信息

Health Effects Laboratory Division, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Morgantown, West Virginia 26505, USA.

出版信息

J Am Soc Mass Spectrom. 2009 Aug;20(8):1567-75. doi: 10.1016/j.jasms.2009.04.016. Epub 2009 May 4.

Abstract

Diisocyanates are highly reactive chemical compounds widely used in the manufacture of polyurethanes. Although diisocyanates have been identified as causative agents of allergic respiratory diseases, the specific mechanism by which these diseases occur is largely unknown. To better understand the chemical species produced when isocyanates are reacted with model peptides, tandem mass spectrometry was employed to unambiguously identify the binding site of four commercially-relevant isocyanates on model peptides. In each case, the isocyanates react preferentially with the N-terminus of the peptide. No evidence of side-chain/isocyanate adduct formation exclusive of the N-terminus was observed. However, significant intra-molecular diisocyanate crosslinking was observed between the N-terminal amine and a side-chain amine of arginine, when Arg was located within two residues of the N-terminus. Addition of multiple isocyanates to the peptide occurs via polymerization of the isocyanate at the N-terminus, rather than via addition of multiple isocyanate molecules to varied residues within the peptide. The direct observation of isocyanate binding to the N-terminus of peptides under these experimental conditions is in good agreement with previous studies on the relative reaction rate of isocyanate with amino acid functional groups.

摘要

二异氰酸酯是高度反应性的化合物,广泛用于聚氨酯的制造。尽管二异氰酸酯已被确定为过敏性呼吸道疾病的致病因素,但这些疾病发生的具体机制在很大程度上尚不清楚。为了更好地了解异氰酸酯与模型肽反应时产生的化学物质,采用串联质谱法明确鉴定了四种商业相关异氰酸酯在模型肽上的结合位点。在每种情况下,异氰酸酯优先与肽的N端反应。未观察到排除N端的侧链/异氰酸酯加合物形成的证据。然而,当精氨酸位于N端的两个残基内时,在N端胺和精氨酸的侧链胺之间观察到了显著的分子内二异氰酸酯交联。向肽中添加多个异氰酸酯是通过异氰酸酯在N端的聚合发生的,而不是通过向肽内不同残基添加多个异氰酸酯分子。在这些实验条件下对异氰酸酯与肽N端结合的直接观察与先前关于异氰酸酯与氨基酸官能团相对反应速率的研究结果高度一致。

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