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The Role of Phosphorylated Residues in Peptide-Peptide Noncovalent Complexes Formation

机译:磷酸化残基在肽-肽非共价复合物形成中的作用

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摘要

Electrospray mass spectrometry (ESI-MS) has become the tool of choice for the study of noncovalent complexes. Our previous work has highlighted the role of phosphorylated amino acid residues in the formation of noncovalent complexes through electrostatic interaction with arginine residues’ guanidinium groups. In this study, we employ tandem mass spectrometry to investigate the gas-phase stability and dissociation pathways of these noncovalent complexes. The only difference in the three phosphopeptides tested is the nature of the phosphorylated amino acid residue. In addition the absence of acidic residues and an amidated carboxyl terminus insured that the only negative charge came from the phosphate, which allowed for the comparison of the nonconvalent bond between arginine residues and each of the different phosphorylated residues. Dissociation curves were generated by plotting noncovalent complex ion intensities as a function of the nominal energy given to the noncovalent complex ion prior to entering the collision cell. These results showed that noncovalent complexes formed with phosphorylated tyrosine were the most stable followed by serine and threonine which had similar stability.
机译:电喷雾质谱(ESI-MS)已成为研究非共价复合物的首选工具。我们以前的工作强调了磷酸化氨基酸残基在与精氨酸残基的胍基团发生静电相互作用中形成非共价复合物的作用。在这项研究中,我们采用串联质谱法研究这些非共价复合物的气相稳定性和解离途径。测试的三种磷酸肽的唯一区别是磷酸化氨基酸残基的性质。此外,由于不存在酸性残基和酰胺化的羧基末端,因此确保了唯一的负电荷来自磷酸盐,从而可以比较精氨酸残基与每个不同的磷酸化残基之间的非价键。解离曲线是通过绘制非共价络合物离子强度作为进入碰撞池之前赋予非共价络合物离子的标称能量的函数来绘制的。这些结果表明,与磷酸化酪氨酸形成的非共价复合物最稳定,其次是具有相似稳定性的丝氨酸和苏氨酸。

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