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Phosphorylation site identification via ion trap tandem mass spectrometry of whole protein and peptide ions: Bovine alpha-crystallin A chain

机译:通过离子阱串联质谱法鉴定全蛋白和肽离子的磷酸化位点:牛α-晶状蛋白A链

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Tandem mass spectrometry was applied both to ions of a tryptic fragment and intact protein of bovine a-crystallin A chain to localize the single site of phosphorylation. The [M + 19H](19+) to [M + 11H](11+) charge states of both phosphorylated and unphosphorylated bovine a-crystallin A chain whole protein ions were subjected to collisional activation in a quadrupole ion trap. Ion parking was used to increase the number of parent ions over that yielded by electrospray. Ion-ion proton-transfer reactions were used to reduce the product ion charge states largely to + 1 to simplify spectral interpretation. In agreement with previous studies on whole protein ion fragmentation, both protein forms showed backbone cleavages C-terminal to aspartic acid residues at lower charge states. The phosphorylated protein showed competitive fragmentation between backbone cleavage and the neutral loss of phosphoric acid. Analysis of which backbone cleavage products did or did not contain the phosphate was used to localize the site of phosphorylation to one of two possible serine residues. A tryptic digest of the bovine a-crystallin A chain yielded a phosphopeptide containing one missed cleavage site. The peptide provided information complementary to that obtained from the intact protein and localized the modified serine to residue 122. Fragmentation of the triply charged phosphopeptide yielded five possible serine phosphorylation sites. Fragmentation of the doubly charged phosphopeptide, formed by ion/ion proton-transfer reactions, positively identified the phosphorylation site as serine-122. [References: 68]
机译:串联质谱同时应用于胰蛋白酶片段的离子和牛a-晶状蛋白A链的完整蛋白,以定位单个磷酸化位点。磷酸化和未磷酸化的牛α-晶状蛋白A链的[M + 19H](19+)至[M + 11H](11+)电荷状态在四极离子阱中受到碰撞活化。离子停放被用来增加母离子的数量,使其超过电喷雾产生的数量。离子离子质子转移反应可将产物离子的电荷态大大降低至+ 1,从而简化光谱解释。与先前对全蛋白质离子片段化的研究相一致,两种蛋白质形式均显示在较低电荷状态下C端对天冬氨酸残基的骨架裂解。磷酸化的蛋白质显示主链裂解和磷酸的中性损失之间的竞争性片段化。分析哪些主链裂解产物含有或不含磷酸盐,将磷酸化位点定位在两个可能的丝氨酸残基之一上。牛α-晶状蛋白A链的胰蛋白酶消化产生包含一个缺失的切割位点的磷酸肽。该肽提供了与从完整蛋白获得的信息互补的信息,并将修饰的丝氨酸定位于残基122。三电荷磷酸肽的片段化产生了五个可能的丝氨酸磷酸化位点。通过离子/离子质子转移反应形成的带双电荷的磷酸肽的片段确定地将磷酸化位点确定为丝氨酸-122。 [参考:68]

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