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From the Cover: Top-down mass spectrometry of a 29-kDa protein for characterization of any posttranslational modification to within one residue

机译:从封面开始:29 kDa蛋白的自顶向下质谱分析用于表征一个残基内的任何翻译后修饰

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摘要

A mass difference between the measured molecular weight of a protein and that of its DNA-predicted sequence indicates sequence errors and/or posttranslational modifications. In the top-down mass spectrometry approach, the measured molecular ion is dissociated, and these fragment masses are matched against those predicted from the protein sequence to restrict the locations of the errors/modifications. The proportion of the ion's interresidue bonds that are cleaved determines the specificity of such locations; previously, ubiquitin (76 residues) was the largest for which all such bonds were dissociated. Now, cleavages are achieved for carbonic anhydrase at 250 of the 258 interresidue locations. Cleavages of three spectra would define posttranslational modifications at 235 residues to within one residue. For 24 of the 34 possible phosphorylation sites, the cleavages of one spectrum would delineate exactly all −PO3H substitutions. This result has been achieved with electron-capture dissociation by minimizing the further cleavage of primary product ions and by denaturing the tertiary noncovalent bonding of the molecular ions under a variety of conditions.
机译:蛋白质的分子量与DNA预测的分子量之间的质量差异表示序列错误和/或翻译后修饰。在自上而下的质谱方法中,将测得的分子离子解离,并将这些片段质量与从蛋白质序列预测的片段质量进行匹配,以限制错误/修饰的位置。被切割的离子残基间键的比例决定了这些位置的特异性。以前,泛素(76个残基)是所有此类键均解离的最大残基。现在,在258个残基间位置的250个处实现了碳酸酐酶的裂解。对三个光谱的切割将在235个残基处将翻译后修饰限定在一个残基内。对于34个可能的磷酸化位点中的24个,一个光谱的裂解将精确描述所有-PO3H取代。通过最小化初级产物离子的进一步裂解,以及通过在各种条件下使分子离子的三价非共价键变性,可通过电子捕获解离获得此结果。

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