首页> 外文期刊>Analytical chemistry >Phosphate Group-Driven Fragmentation of Multiply Charged Phosphopeptide Anions. Improved Recognition of Peptides Phosphorylated at Serine, Threonine, or Tyrosine by Negative Ion Electrospray Tandem Mass Spectrometry
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Phosphate Group-Driven Fragmentation of Multiply Charged Phosphopeptide Anions. Improved Recognition of Peptides Phosphorylated at Serine, Threonine, or Tyrosine by Negative Ion Electrospray Tandem Mass Spectrometry

机译:磷酸基团驱动的带电荷的磷酸肽阴离子的裂解。负离子电喷雾串联质谱法提高对丝氨酸,苏氨酸或酪氨酸磷酸化的肽的识别

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The nanoelectrospray product ion spectra of multiply charged phosphopeptide anions reveal the occurrence of phosphate-specific high-mass fragment ions of the type [M - nH - 79]~((n-1)-). These so far unrecognized fragments, which are observed for phosphoserine-, phosphothreonine-, and phosphotyrosine-containing peptides, are the counterparts of the established inorganic phosphopeptide marker ion found at m/z 79 velence [PO_(3)]~(-). The highmass marker ions are formed with high efficiency at moderate collision offset values and are particularly useful for sensitive recognition of pSer-, pThr-, and pTyr-peptides due to the low background level in MS/MS spectra at m/z values above those of the precursor ions. By virtue of this feature, the detection of the new phosphorylation-specific fragment ions appears to be more sensitive than the detection of the low-mass phosphate marker ion at m/z 79, where a higher interference by nonspecific background signals is generally observed. The number of phosphate groups within a phosphopeptide can also be estimated on the basis of the [M - nH - 79]~((n-1)-) ions, since these exhibit an effective, sequential neutral loss of H_(3)PO_(4) of the residing phosphate groups. A mechanistic explanation for the formation of the [M - nH - 79]~((n-1)-) ions from multiply charged phosphopeptides is given. The high-mass marker ions are proposed to originate from phosphopeptide anions, which carry two negative charges located at the phosphate group. A new search tool denominated "variable m/z gain analysis", which utilizes these newly recognized high-mass fragments for spotting of phosphopeptides in a negative ion parent scan, is proposed. The findings strengthen the value of negative ion ESI-MS/MS for analysis of protein phosphorylation.
机译:多重带电磷酸肽阴离子的纳米电喷雾产物离子光谱揭示了[M-nH-79]〜((n-1)-)型磷酸盐特异性高质量碎片离子的出现。这些迄今无法识别的片段,在含磷酸丝氨酸,磷酸苏氨酸和磷酸酪氨酸的肽中观察到,与在m / z 79 velence [PO_(3)]〜(-)处发现的已建立的无机磷酸肽标记离子相对应。较高质量的标记离子在中等的碰撞偏移值下高效形成,由于在m / z值之上的m / z值,MS / MS光谱中的背景水平较低,因此特别适用于pSer-,pThr-和pTyr-肽的灵敏识别。前体离子。凭借此功能,新磷酸化特异性片段离子的检测似乎比m / z 79处的低质量磷酸酯标记离子的检测更为灵敏,在m / z 79处通常观察到更高的非特异性背景信号干扰。磷酸肽中的磷酸根基团的数量也可以基于[M-nH-79]〜((n-1)-)离子进行估算,因为这些离子表现出有效的,连续的H_(3)PO_中性丢失(4)驻留的磷酸基团。给出了由多电荷磷酸肽形成[M-nH-79]〜((n-1)-)离子的机理解释。提出了高质量标记离子源自磷酸肽阴离子,其携带两个位于磷酸基团的负电荷。提出了一种新的名为“可变m / z增益分析”的搜索工具,该工具利用这些新近识别的高质量片段在负离子母体扫描中发现磷酸肽。这些发现增强了负离子ESI-MS / MS在蛋白质磷酸化分析中的价值。

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