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Statistical characterization of the charge state and residue dependence of low-energy CID peptide dissociation patterns

机译:低能CID肽解离模式的电荷状态和残基依赖性的统计表征

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Data mining was performed on 28 330 unique peptide tandem mass spectra for which sequences were assigned with high confidence. By dividing the spectra into different sets based on structural features and charge states of the corresponding peptides, chemical interactions involved in promoting specific cleavage patterns in gas-phase peptides were characterized. Pairwise fragmentation maps describing cleavages at afl Xxx-Zzz residue combinations for b and y ions reveal that the difference in basicity between Arg and Lys results in different dissociation patterns for singly charged Arg- and Lys-ending tryptic peptides. While one dominant protonation form (proton localized) exists for Arg-ending peptides, a heterogeneous population of different protonated forms or more facile interconversion of protonated forms (proton partially mobile) exists for Lys-ending peptides. Cleavage C-terminal to acidic residues dominates spectra from singly charged peptides that have a localized proton and cleavage N-terminal to Pro dominates those that have a mobile or partially mobile proton. When Pro is absent from peptides that have a mobile or partially mobile proton, cleavage at each peptide bond becomes much more prominent. Whether the above patterns can be found in b ions, y ions, or both depends on the location of the proton holder(s) in multiply protonated peptides. Enhanced cleavages C-terminal to branched aliphatic residues (Ile, Val, Leu) are observed in both b and y ions from peptides that have a mobile proton, as well as in y ions from peptides that have a partially mobile proton; enhanced cleavages N-terminal to these residues are observed in b ions from peptides that have a partially mobile proton. Statistical tools have been designed to visualize the fragmentation maps and measure the similarity between them. The pairwise cleavage patterns observed expand our knowledge of peptide gas-phase fragmentation behaviors and may be useful in algorithm development that employs improved models to predict fragment ion intensities.
机译:在28 330个独特的肽串联质谱图上进行数据挖掘,并为其分配了高可信度的序列。通过根据相应肽的结构特征和电荷状态将光谱划分为不同的组,可以表征促进气相肽中特定裂解模式的化学相互作用。成对的碎片图描述了b和y离子在afl Xxx-Zzz残基组合处的裂解,揭示了Arg和Lys之间碱性的差异导致单电荷Arg和Lys末端胰蛋白酶肽的解离方式不同。尽管存在一个主要的质子化形式(质子定位)用于Arg末端肽,但对于Lys末端肽存在一个不同质子化形式的异质群体,或者存在更容易的质子化形式相互转化(质子部分可移动)。从C端到酸性残基的切割占主导地位,来自具有局部质子的单电荷肽的光谱,从N端至Pro的裂解,占据了具有活动或部分活动质子的肽段的光谱。当具有可移动或部分可移动的质子的肽中不存在Pro时,在每个肽键处的裂解会变得更加突出。是否能在b离子,y离子中或同时在b离子,y离子中找到上述模式,取决于质子固定器在多重质子化肽中的位置。在具有可移动质子的肽的b和y离子以及具有部分可移动质子的肽的y离子中均观察到C端对支链脂肪族残基(Ile,Val,Leu)的切割增强。在具有部分可移动质子的肽的b离子中观察到了这些残基N末端增强的切割。设计了统计工具以可视化碎片图并测量它们之间的相似性。观察到的成对裂解模式扩展了我们对肽气相裂解行为的了解,并且可能在算法开发中有用,该算法开发采用改进的模型来预测碎片离子强度。

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