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In-Gel Digestion of Proteins Using a Solid-Phase Extraction Microplate

机译:使用固相萃取微孔板进行蛋白质的凝胶内消化

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摘要

We present a new procedure for in-gel digestion of proteins introducing a combination of two different 96-well microplates. The two plates have incorporated small capillaries with a length of 2.4 mm in each well, one of which has 75-μm-inner diameter capillaries, whereas the second plate has reversed-phase-type capillaries fixed to it. The initial steps of the in-gel digestion process, comprising destaining, reduction/alkylation, dehydration, and digestion, was carried out in the plate containing 75-μm capillaries. Capillaries containing C18 reversed-phase modified monolithic silica rods of a 200-μm diameter were used for the second plate in which extraction and cleanup of peptides were carried out. Peptides were eluted directly from the solid-phase extraction plate onto the MALDI sample support. The separation of the process into two plates led to increased process stability, without compromising sensitivity, i.e. peptide recovery, making it suitable for true high-throughput protein identification. The handling of proteinases could easily be optimized, and no restrictions were made on chosen pH range through the absence of the solid phase in the initial steps of the protocol. Efficient binding of peptides to the solid phase and subsequent direct elution onto the MALDI sample support led to sensitivities in the attomole range. Performance of the process was demonstrated with tryptic digests of proteins stained with colloidal coomassie blue, silver, and the fluorescent stain SYPRO Ruby.
机译:我们介绍了蛋白质的凝胶内消化的新程序,介绍了两种不同的96孔微孔板的组合。这两个板在每个孔中合并了长度为2.4 mm的小毛细管,其中一个具有内径为75μm的毛细管,而第二个板则固定有反相型毛细管。凝胶内消化过程的初始步骤(包括脱色,还原/烷基化,脱水和消化)在包含75μm毛细管的平板中进行。第二块板使用了直径为200μm的含有C18反相改性的整体硅胶棒的毛细管,在第二块板中进行了肽的提取和纯化。肽直接从固相萃取板上洗脱到MALDI样品载体上。将过程分为两块板可提高过程稳定性,同时又不影响灵敏度(即肽回收率),因此适合进行真正的高通量蛋白质鉴定。可以很容易地优化蛋白酶的处理,并且在方案的初始步骤中,由于不存在固相,因此对选择的pH范围没有限制。肽与固相的有效结合以及随后在MALDI样品支持物上的直接洗脱导致灵敏度在attomole范围内。用胶体考马斯蓝,银和荧光染料SYPRO Ruby染色的蛋白质的胰蛋白酶消化物证明了该方法的性能。

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