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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >COMPARISON OF IN-GEL AND ON-MEMBRANE DIGESTION METHODS AT LOW TO SUB-PMOL LEVEL FOR SUBSEQUENT PEPTIDE AND FRAGMENT-ION MASS ANALYSIS USING MATRIX-ASSISTED LASER-DESORPTION IONIZATION MASS SPECTROMETRY
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COMPARISON OF IN-GEL AND ON-MEMBRANE DIGESTION METHODS AT LOW TO SUB-PMOL LEVEL FOR SUBSEQUENT PEPTIDE AND FRAGMENT-ION MASS ANALYSIS USING MATRIX-ASSISTED LASER-DESORPTION IONIZATION MASS SPECTROMETRY

机译:后续肽的凝胶内和膜内消解方法在亚甲基水平上的比较和基于基质辅助激光解离电离质谱的碎片离子质量分析

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The success of the mass spectrometric-based approaches for the identification of gel-separated proteins relies upon recovery of peptides, without high levels of ionization-suppressing contaminants, in solvents compatible with the mass spectrometer being employed. We sought to determine whether in-gel or on-membrane digestion provided a significant advantage when low to sub-pmol quantities of gel-separated proteins were analyzed by matrix-assisted laser-desorption/ionization mass spectrometry (MALDI-MS) with respect to the number and size of released peptides. Serial dilutions of five standard proteins of M-r 17000 to 97000 (from 16 pmol to 125 fmol) were electrophoresed and subjected to in-gel digestion (using a microcolumn clean-up protocol, Courchesne, P.L. and Patterson, S. D., BioTechniques, 1997, in press) or on-membrane digestion following blotting to the PVDF-based membranes, Immobilon-P and Immobilon-CD. Peptide maps were able to be obtained for all proteins at the detection limit of each method (Immobilon-P and Immobilon-CD, 0.5 pmol; and in-gel, 125 fmol), and searches of Swiss-Prot or a nonredundant database (>193000 entries) successfully identified all of the proteins, except beta-casein. Fragment-ion spectra using a curved-field reflector MALDI-MS were obtained from more than one peptide per protein at loads down to 250 fmol (except p-casein). Using the uninterpreted data, a search of the nonredundant database and a six-way translation of GenBank dbEST (>2208000 entries total) was able to identify myoglobin, carbonic anhydrase II, and phosphorylase b. [References: 54]
机译:用于鉴定凝胶分离蛋白的基于质谱的方法的成功取决于在与质谱仪兼容的溶剂中回收肽而没有高水平的抑制电离的污染物。我们试图确定通过基质辅助激光解吸/电离质谱法(MALDI-MS)分析低至亚pmol量的凝胶分离蛋白时,凝胶内消化或膜上消化是否具有显着优势。释放肽的数量和大小。电泳将5种标准蛋白的系列稀释液从17000到97000先生(从16 pmol到125 fmol)进行电泳,并进行凝胶内消化(使用微柱净化方案,Courchesne,PL和Patterson,SD,BioTechniques,1997,in)。印迹)或印迹到基于PVDF的膜Immobilon-P和Immobilon-CD后进行膜上消化。能够在每种方法的检测极限下获得所有蛋白质的肽图(Immobilon-P和Immobilon-CD,0.5 pmol;凝胶内,125 fmol),并搜索Swiss-Prot或非冗余数据库(> 193000个条目)成功鉴定了除β-酪蛋白外的所有蛋白质。使用弯曲场反射器MALDI-MS可以从每种蛋白质的一种以上肽以低至250 fmol的负载(p-酪蛋白除外)获得碎片离子光谱。使用未解释的数据,对非冗余数据库的搜索和GenBank dbEST的六向翻译(总计> 2208000个条目)能够识别肌红蛋白,碳酸酐酶II和磷酸化酶b。 [参考:54]

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