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首页> 外文期刊>Journal of biomolecular techniques :JBT. >N-terminal protein characterization by mass spectrometry using combined microscale liquid and solid-phase derivatization
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N-terminal protein characterization by mass spectrometry using combined microscale liquid and solid-phase derivatization

机译:结合使用微型液相和固相衍生化质谱法对N端蛋白质进行表征

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A sample-preparation method for N-terminal peptide isolation from protein proteolytic digests has been developed. Protein thiols and primary amines were protected by carboxyamidomethylation and acetylation, respectively, followed by trypsinization. The digest was bound to ZipTipC18 pipette tips for reaction of the newly generated N-termini with sulfosuccinimidyl-6-[3'-(2-pyridyldithio)-propionamido] hexanoate. The digest was subsequently exposed to hydroxylamine for reversal of hydroxyl group acylation, followed by reductive release of the pyridine-2-thione moiety from the derivatives. The thiol group-functionalized internal and C-terminal peptides were reversibly captured by covalent chromatography on activated thiol sepharose leaving the N-terminal fragment free in solution. The use of the reversed-phase supports as a reaction bed enabled optimization of the serial modification steps for throughput and completeness of derivatization. The use of the sample-preparation method was demonstrated with low picomole amounts of in-solution- and in-gel-digested protein. The N-terminal peptide was selectively retrieved from the affinity support. The sample-preparation method provides for throughput, robustness, and simplicity of operation using standard equipment available in most biological laboratories and is anticipated to be readily expanded to proteomewide applications.
机译:已经开发了一种从蛋白质蛋白水解消化物中分离N末端肽的样品制备方法。蛋白硫醇和伯胺分别通过羧酰胺甲基化和乙酰化保护,然后进行胰蛋白酶保护。消化物与ZipTipC18移液器吸头结合,使新生成的N-末端与磺基琥珀酰亚胺-6- [3'-(2-吡啶基二硫代)-丙酰胺基]己酸酯反应。随后将消化物暴露于羟胺以逆转羟基酰化,然后从衍生物还原性释放吡啶-2-硫酮部分。通过在活化的硫醇琼脂糖上的共价色谱法可逆地捕获硫醇基团官能化的内部和C端肽,使N端片段在溶液中游离。通过使用反相载体作为反应床,可以优化连续修饰步骤,以提高生产量和衍生化的完整性。在溶液中和凝胶中消化的蛋白质的picomole含量低时,证明了样品制备方法的使用。从亲和支持物中选择性地回收N末端肽。样品制备方法使用大多数生物实验室提供的标准设备可提供通量,坚固性和操作简便性,并且有望轻松扩展到蛋白质组学应用。

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