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阐明非随机飞秒激光诱导的离解/解离机制:从氨基酸到肽。

Mechanism elucidation for nonstochastic femtosecond laser-induced ionization/dissociation: from amino acids to peptides.

机构信息

Departments of Chemistry, Michigan State University East Lansing, Michigan 48824, USA.

出版信息

J Phys Chem A. 2012 Mar 22;116(11):2764-74. doi: 10.1021/jp208421d. Epub 2012 Jan 4.

Abstract

Femtosecond laser-induced ionization/dissociation (fs-LID) has been demonstrated as a novel ion activation method for use in tandem mass spectrometry. The technique opens the door to unique structural information about biomolecular samples that is not easily accessed by traditional means. fs-LID is able to cleave strong bonds while keeping weaker bonds intact. This feature has been found to be particularly useful for the mapping of post-translational modifications such as phosphorylation, which is difficult to achieve by conventional proteomic studies. Here we investigate the laser-ion interaction on a fundamental level through the characterization of fs-LID spectra for the protonated amino acids and two series of derivatized samples. The findings are used to better understand the fs-LID spectra of synthetic peptides. This is accomplished by exploring the effects of several single-residue substitutions.

摘要

飞秒激光诱导离解(fs-LID)已被证明是一种用于串联质谱的新型离子激活方法。该技术为生物分子样品的独特结构信息开辟了通道,而这些信息通常不容易通过传统方法获得。fs-LID 能够在保持较弱键完好无损的情况下切断强键。这一特性已被证明在翻译后修饰(如磷酸化)的映射中特别有用,这是传统蛋白质组学研究难以实现的。在这里,我们通过对质子化氨基酸和两个衍生化样品系列的 fs-LID 光谱进行表征,从根本上研究了激光-离子相互作用。这些发现用于更好地理解合成肽的 fs-LID 光谱。通过探索几种单残基取代的影响来实现这一点。

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