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通过基质辅助激光解吸电离飞行时间质谱法自动识别凝胶分离蛋白质的技术创新。

Technical innovations for the automated identification of gel-separated proteins by MALDI-TOF mass spectrometry.

作者信息

Jahn Olaf, Hesse Dörte, Reinelt Marina, Kratzin Hartmut D

机构信息

Proteomics Group, Max-Planck-Institute of Experimental Medicine, Hermann-Rein-Str. 3, 37075 Göttingen, Germany.

出版信息

Anal Bioanal Chem. 2006 Sep;386(1):92-103. doi: 10.1007/s00216-006-0592-1. Epub 2006 Jul 5.

Abstract

The combination of gel-based two-dimensional protein separations with protein identification by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) is the workhorse for the large-scale analyses of proteomes. Such high-throughput proteomic approaches require automation of all post-separation steps and the in-gel digest of proteins especially is often the bottleneck in the protein identification workflow. With the objective of reaching the same high performance of manual low-throughput in-gel digest procedures, we have developed a novel stack-type digestion device and implemented it into a commercially available robotic liquid handling system. This modified system is capable of performing in-gel digest, extraction of proteolytic peptides, and subsequent sample preparation for MALDI-MS without any manual intervention, but with a performance at least identical to manual procedures as indicated on the basis of the sequence coverage obtained by peptide mass fingerprinting. For further refinement of the automated protein identification workflow, we have also developed a motor-operated matrix application device to reproducibly obtain homogenous matrix preparation of high quality. This matrix preparation was found to be suitable for the automated acquisition of both peptide mass fingerprint and fragment ion spectra from the same sample spot, a prerequisite for high confidence protein identifications on the basis of peptide mass and sequence information. Due to the implementation of the stack-type digestion device and the motor-operated matrix application device, the entire platform works in a reliable, cost-effective, and sensitive manner, yielding high confidence protein identifications even for samples in the concentration range of as low as 100 fmol protein per gel plug.

摘要

基于凝胶的二维蛋白质分离与通过基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)进行蛋白质鉴定相结合,是蛋白质组大规模分析的主要方法。这种高通量蛋白质组学方法需要对所有分离后步骤进行自动化操作,尤其是凝胶内蛋白质消化往往是蛋白质鉴定工作流程中的瓶颈。为了达到与手动低通量凝胶内消化程序相同的高性能,我们开发了一种新型堆叠式消化装置,并将其应用于市售的机器人液体处理系统中。这种改进后的系统能够在无需任何人工干预的情况下进行凝胶内消化、蛋白水解肽的提取以及随后的MALDI-MS样品制备,但其性能至少与手动程序相同,这是根据肽质量指纹图谱获得的序列覆盖率得出的结论。为了进一步优化自动化蛋白质鉴定工作流程,我们还开发了一种电动基质应用装置,以可重复地获得高质量的均匀基质制剂。发现这种基质制剂适用于从同一样品点自动获取肽质量指纹图谱和碎片离子光谱,这是基于肽质量和序列信息进行高可信度蛋白质鉴定的前提条件。由于采用了堆叠式消化装置和电动基质应用装置,整个平台以可靠、经济高效且灵敏的方式运行,即使对于每凝胶块中低至100 fmol蛋白质浓度范围内的样品,也能实现高可信度的蛋白质鉴定。

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