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首页> 外文期刊>Analytical chemistry >Consecutive Proteolytic Digestion in an Enzyme Reactor Increases Depth of Proteomic and Phosphoproteomic Analysis
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Consecutive Proteolytic Digestion in an Enzyme Reactor Increases Depth of Proteomic and Phosphoproteomic Analysis

机译:酶反应器中的连续蛋白水解消化增加了蛋白质组学和磷酸化蛋白质组学分析的深度

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摘要

Analytical advantages of using multiple enzymes for sample digestion (MED), primarily an increase of sequence coverage, have been reported in several studies. However, this approach is only rarely used, mainly because it requires additional sample and mass spectrometric measurement time. We have previously described Filter Aided Sample Preparation (FASP), a type of proteomic reactor, in which samples dissolved in sodium dodecyl sulfate (SDS) are digested in an ultrafiltration unit. In FASP, such as in any other preparation protocol, a portion of sample remains after digestion and peptide elution. Making use of this fact, we here develop a protocol enabling consecutive digestion of the sample with two or three enzymes. By use of the FASP method, peptides are liberated after each digestion step and remaining material is subsequently cleaved with the next proteinase. We observed excellent performance of the ultrafiltration devices in this mode, allowing efficient separation of orthogonal populations of peptides, resulting in an increase in the numbers of identified peptides and proteins. At the low microgram level, we found that the consecutive use of endoproteinases LysC and trypsin enabled identification of up to 40percent more proteins and phosphorylation sites in comparison to the commonly used one-step tryptic digestion. MED-FASP offers efficient exploration of previously unused sample material, increasing depth of proteomic analyses and sequence coverage.
机译:在多项研究中已报道了使用多种酶进行样品消化(MED)的分析优势,主要是增加了序列覆盖率。但是,这种方法很少使用,主要是因为它需要额外的样品和质谱测量时间。前面我们已经描述了蛋白质组反应器类型的辅助过滤器样品制备(FASP),其中溶解在十二烷基硫酸钠(SDS)中的样品在超滤单元中进行消化。在FASP中,例如在其他任何制备方案中,一部分样品在消化和肽洗脱后仍保留。利用这一事实,我们在这里开发了一种协议,该协议可以用两种或三种酶连续消化样品。通过使用FASP方法,在每个消化步骤后释放肽,然后用下一个蛋白酶裂解剩余的物质。我们在这种模式下观察到超滤装置的出色性能,可以有效分离正交的肽群,从而导致鉴定出的肽和蛋白质数量增加。在低微克水平,我们发现,与常用的一步式胰蛋白酶消化法相比,连续使用内切蛋白酶LysC和胰蛋白酶可以鉴定多达40%的蛋白质和磷酸化位点。 MED-FASP可对先前未使用的样品材料进行有效的探索,从而增加蛋白质组学分析的深度和序列覆盖率。

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