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首页> 外文期刊>Analytical and bioanalytical chemistry >Fragmentation of intra-peptide and inter-peptide disulfide bonds of proteolytic peptides by nanoESI collision-induced dissociation
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Fragmentation of intra-peptide and inter-peptide disulfide bonds of proteolytic peptides by nanoESI collision-induced dissociation

机译:nanoESI碰撞诱导的解离作用使蛋白水解肽的肽内和肽间二硫键断裂

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Characterisation and identification of disulfide bridges is an important aspect of structural elucidation of proteins. Covalent cysteine-cysteine contacts within the protein give rise to stabilisation of the native tertiary structure of the molecules. Bottom-up identification and sequencing of proteins by mass spectrometry most frequently involves reductive cleavage and alkylation of disulfide links followed by enzymatic digestion. However, when using this approach, information on cysteine-cysteine contacts within the protein is lost. Mass spectrometric characterisation of peptides containing intra-chain disulfides is a challenging analytical task, because peptide bonds within the disulfide loop are believed to be resistant to fragmentation. In this contribution we show recent results on the fragmentation of intra and inter-peptide disulfide bonds of proteolytic peptides by nano electrospray ionisation collision-induced dissociation (nanoESI CID). Disulfide bridge-containing peptides obtained from proteolytic digests were submitted to low-energy nanoESI CID using a quadrupole time-of-flight (Q-TOF) instrument as a mass analyser. Fragmentation of the gaseous peptide ions gave rise to a set of b and y-type fragment ions which enabled derivation of the sequence of the amino acids located outside the disulfide loop. Surprisingly, careful examination of the fragment-ion spectra of peptide ions comprising an intramolecular disulfide bridge revealed the presence of low-abundance fragment ions formed by the cleavage of peptide bonds within the disulfide loop. These fragmentations are preceded by proton-induced asymmetric cleavage of the disulfide bridge giving rise to a modified cysteine containing a disulfohydryl substituent and a dehydroalanine residue on the C-S cleavage site.
机译:二硫键的表征和鉴定是蛋白质结构阐明的重要方面。蛋白质内的共价半胱氨酸-半胱氨酸接触导致分子天然三级结构的稳定。通过质谱的自下而上的鉴定和测序通常涉及还原性裂解和二硫键的烷基化,然后进行酶消化。但是,使用这种方法时,有关蛋白质内半胱氨酸-半胱氨酸接触的信息会丢失。包含链内二硫键的肽的质谱表征是一项具有挑战性的分析任务,因为据信二硫环内的肽键具有抗断裂性。在这项贡献中,我们显示了通过纳米电喷雾电离碰撞诱导解离(nanoESI CID)对蛋白水解肽的肽内和肽间二硫键断裂的最新结果。使用四极杆飞行时间(Q-TOF)仪器作为质量分析仪,将从蛋白水解消化物中获得的含二硫键的肽段提交给低能nanoESI CID。气态肽离子的断裂产生一组b和y型片段离子,这使得能够推导位于二硫键环外部的氨基酸序列。出人意料地,仔细检查包含分子内二硫键的肽离子的碎片离子光谱,发现存在由二硫键环内的肽键裂解形成的低丰度碎片离子。这些断裂之前是质子诱导的二硫键的不对称裂解,产生了修饰的半胱氨酸,在C-S裂解位点上含有二巯基取代基和脱氢丙氨酸残基。

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