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首页> 外文期刊>European journal of mass spectrometry >Electron capture dissociation of O-glycosylated peptides: radical site-induced fragmentation of glycosidic bonds
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Electron capture dissociation of O-glycosylated peptides: radical site-induced fragmentation of glycosidic bonds

机译:O糖基化肽的电子捕获解离:自由基位点诱导的糖苷键断裂

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Glycosylation of proteins represents one of the most important post-translational modifications. The structural characterisation of glycoproteins-especially with respect to the determination of the glycosylation site-by direct mass spectrometric methods still remains an elusive goal. We have applied the low energy dissociation method electron capture dissociation (ECD) in a 9.4 T Fourier transform ion cyclotron resonance mass spectrometer to the stuctural elucidation of mucin-derived peptides glycosylated with glycans of different core types. Capture of an electron by multiply protonated precursor ions [M + nH](n+) resulted in the formation of reduced odd electron radical cations [M + nH]((n-1)+.). Subsequent cleavage of the N-C alpha bonds of the peptide chain, mostly without loss of the labile sugar moiety, represents a major fragmentation pathway allowing unambiguous assignment of the glycosylation site. In addition to peptide backbone cleavages, loss of acetyl radicals from the N-acetyl group of the HexNAc glycans is observed. Radical site-induced elimination processes of the glycan moieties initiated by hydrogen transfer, from the glycan to the peptide backbone and vice versa give rise to signals in the ECD spectra. The different sugar core types exhibit different fragmentation patterns driven by the stability of the resulting fragments allowing the discrimination of isomeric glycans.
机译:蛋白质的糖基化代表最重要的翻译后修饰之一。通过直接质谱法对糖蛋白的结构表征,尤其是在糖基化位点的确定方面,仍然是一个遥不可及的目标。我们已将9.4 T傅里叶变换离子回旋共振质谱仪中的低能解离电子捕获解离(ECD)应用于结构化阐明由不同核心类型糖基糖基化的粘蛋白衍生肽。通过多个质子化的前体离子[M + nH](n +)捕获电子,导致形成还原的奇数电子自由基阳离子[M + nH]((n-1)+。)。肽链的N-Cα键的随后裂解(主要是在不失去不稳定的糖部分的情况下)代表了主要的裂解途径,可以明确分配糖基化位点。除了裂解肽主链外,还观察到HexNAc聚糖的N-乙酰基上的乙酰基丢失。由氢从聚糖到肽主链的氢转移引发的自由基部分诱导的聚糖部分的消除过程引起ECD光谱中的信号。不同糖芯类型表现出不同的片段化模式,这些片段化模式由所得片段的稳定性驱动,从而可以区分异构聚糖。

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