首页> 外文期刊>Journal of proteome research >Large-scale quantitative assessment of different in-solution protein digestion protocols reveals superior cleavage efficiency of tandem Lys-C/trypsin proteolysis over trypsin digestion
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Large-scale quantitative assessment of different in-solution protein digestion protocols reveals superior cleavage efficiency of tandem Lys-C/trypsin proteolysis over trypsin digestion

机译:大规模定量评估不同的溶液中蛋白质消化方案揭示了串联Lys-C /胰蛋白酶蛋白水解的裂解效率优于胰蛋白酶消化

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摘要

The complete and specific proteolytic cleavage of protein samples into peptides is crucial for the success of every shotgun LC-MS/MS experiment. In particular, popular peptide-based label-free and targeted mass spectrometry approaches rely on efficient generation of fully cleaved peptides to ensure accurate and sensitive protein quantification. In contrast to previous studies, we globally and quantitatively assessed the efficiency of different digestion strategies using a yeast cell lysate, label-free quantification, and statistical analysis. Digestion conditions include double tryptic, surfactant-assisted, and tandem-combinatorial Lys-C/trypsin digestion. In comparison to tryptic digests, Lys-C/trypsin digests were found most efficient to yield fully cleaved peptides while reducing the abundance of miscleaved peptides. Subsequent sequence context analysis revealed improved digestion performances of Lys-C/trypsin for miscleaved sequence stretches flanked by charged basic and particulary acidic residues. Furthermore, targeted MS analysis demonstrated a more comprehensive protein cleavage only after Lys-C/trypsin digestion, resulting in a more accurrate absolute protein quantification and extending the number of peptides suitable for SRM assay development. Therefore, we conclude that a serial Lys-C/trypsin digestion is highly attractive for most applications in quantitative MS-based proteomics building on in-solution digestion schemes.
机译:蛋白质样品的完整且特异性的蛋白水解裂解成肽对于每个shot弹枪LC-MS / MS实验的成功至关重要。特别是,流行的基于肽的无标记和靶向质谱方法依赖于有效生成完全裂解的肽以确保准确而灵敏的蛋白质定量。与以前的研究相比,我们使用酵母细胞裂解液,无标记的定量方法和统计分析方法在全球范围内和定量地评估了不同消化策略的效率。消化条件包括双重胰蛋白酶消化,表面活性剂辅助和串联组合Lys-C /胰蛋白酶消化。与胰蛋白酶消化物相比,Lys-C /胰蛋白酶消化物最有效地产生完全裂解的肽,同时减少了裂解肽的丰度。随后的序列背景分析显示,Lys-C /胰蛋白酶对侧链带电荷的碱性残基和特别是酸性残基的错解的序列片段具有更好的消化性能。此外,靶向MS分析仅在Lys-C /胰蛋白酶消化后才能显示出更全面的蛋白质裂解,从而实现更准确的绝对蛋白质定量,并扩展了适用于SRM分析开发的肽的数量。因此,我们得出结论,对于在基于溶液内消化方案的定量基于MS的蛋白质组学中的大多数应用而言,连续的Lys-C /胰蛋白酶消化非常有吸引力。

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