首页> 美国卫生研究院文献>Journal of Biomolecular Techniques : JBT >C-Terminal Protein Characterization by Mass Spectrometry: Isolation of C-Terminal Fragments from Cyanogen Bromide-Cleaved Protein
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C-Terminal Protein Characterization by Mass Spectrometry: Isolation of C-Terminal Fragments from Cyanogen Bromide-Cleaved Protein

机译:通过质谱分析C末端蛋白的特性:从氰化溴化物裂解的蛋白中分离C末端片段

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摘要

A sample preparation method for protein C-terminal peptide isolation from cyanogen bromide (CNBr) digests has been developed. In this strategy, the analyte was reduced and carboxyamidomethylated, followed by CNBr cleavage in a one-pot reaction scheme. The digest was then adsorbed on ZipTipC18 pipette tips for conjugation of the homoserine lactone-terminated peptides with 2,2′-dithiobis (ethylamine) dihydrochloride, followed by reductive release of 2-aminoethanethiol from the derivatives. The thiol-functionalized internal and N-terminal peptides were scavenged on activated thiol sepharose, leaving the C-terminal peptide in the flow-through fraction. The use of reversed-phase supports as a venue for peptide derivatization enabled facile optimization of the individual reaction steps for throughput and completeness of reaction. Reagents were replaced directly on the support, allowing the reactions to proceed at minimal sample loss. By this sequence of solid-phase reactions, the C-terminal peptide could be recognized uniquely in mass spectra of unfractionated digests by its unaltered mass signature. The use of the sample preparation method was demonstrated with low-level amounts of a whole, intact model protein. The C-terminal fragments were retrieved selectively and efficiently from the affinity support. The use of covalent chromatography for C-terminal peptide purification enabled recovery of the depleted material for further chemical and/or enzymatic manipulation. The sample preparation method provides for robustness and simplicity of operation and is anticipated to be expanded to gel-separated proteins and in a scaled-up format to high-throughput protein profiling in complex biological mixtures.
机译:已经开发了用于从溴化氰(CNBr)消化物中分离蛋白C末端肽的样品制备方法。在该策略中,将分析物还原并羧酰胺甲基化,然后通过一锅反应方案进行CNBr裂解。然后将消化物吸附在ZipTipC18移液器吸头上,将高丝氨酸内酯封端的肽与2,2'-二硫代双(乙胺)二盐酸盐偶联,然后从衍生物中还原释放2-氨基乙硫醇。在活化的硫醇琼脂糖上清除了硫醇官能化的内部和N末端肽,在流通部分中保留了C末端肽。使用反相支持物作为肽衍生化的场所,可以轻松优化各个反应步骤,以提高反应的通量和完成度。将试剂直接替换在支持物上,使反应在样品损失最小的情况下进行。通过这种固相反应序列,可以通过其未改变的质量特征在未分级消化的质谱图中唯一识别C末端肽。样品制备方法的使用已通过少量完整的完整模型蛋白得到了证明。从亲和支持物中有选择地和有效地检索C末端片段。使用共价色谱法纯化C端肽可以回收消耗的物质,以进行进一步的化学和/或酶促处理。样品制备方法提供了耐用性和操作简便性,并有望扩展为凝胶分离的蛋白质,并以放大的形式扩展为复杂生物混合物中的高通量蛋白质分析。

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