Division of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Helsinki, Finland.
Electrophoresis. 2010 Nov;31(22):3745-53. doi: 10.1002/elps.201000373.
Monolithically integrated, polymer (SU-8) microchips comprising an electrophoretic separation unit, a sheath flow interface and an ESI emitter were developed to improve the speed and throughput of proteomics analyses. Validation of the microchip method was performed based on peptide mass fingerprinting and single peptide sequencing of selected protein standards. Rapid, yet reliable identification of four biologically important proteins (cytochrome C, β-lactoglobulin, ovalbumin and BSA) confirmed the applicability of the SU-8 microchips to ambitious proteomic applications and allowed their use in the analysis of human muscle cell lysates. The characteristic tryptic peptides were easily separated with plate numbers approaching 10(6), and with peak widths at half height as low as 0.6 s. The on-chip sheath flow interface was also exploited to the introduction of an internal mass calibrant along with the sheath liquid which enabled accurate mass measurements by high-resolution Q-TOF MS. Additionally, peptide structural characterization and protein identification based on MS/MS fragmentation data of a single tryptic peptide was obtained using an ion trap instrument. Protein sequence coverages exceeding 50% were routinely obtained without any pretreatment of the proteolytic samples and a typical total analysis time from sampling to detection was well below ten minutes. In conclusion, monolithically integrated, dead-volume-free, SU-8 microchips proved to be a promising platform for fast and reliable analysis of complex proteomic samples. Good analytical performance of the microchips was shown by performing both peptide mass fingerprinting of complex cell lysates and protein identification based on single peptide sequencing.
整体式集成聚合物(SU-8)微芯片包含电泳分离单元、鞘流接口和 ESI 发射器,旨在提高蛋白质组学分析的速度和通量。基于选定蛋白质标准品的肽质量指纹图谱和单肽测序对微芯片方法进行了验证。快速可靠地鉴定了四种重要的生物蛋白(细胞色素 C、β-乳球蛋白、卵清蛋白和 BSA),证实了 SU-8 微芯片适用于雄心勃勃的蛋白质组学应用,并允许其用于分析人肌肉细胞裂解物。特征性的胰蛋白酶肽很容易分离,理论塔板数接近 10(6),峰宽为半高的仅为 0.6 s。还利用芯片上的鞘流接口将内部质量校准剂与鞘液一起引入,从而可以通过高分辨率 Q-TOF MS 进行精确的质量测量。此外,使用离子阱仪器还可以基于单个胰蛋白酶肽的 MS/MS 碎裂数据进行肽结构表征和蛋白质鉴定。无需对蛋白水解样品进行任何预处理,通常可获得超过 50%的蛋白序列覆盖率,从采样到检测的典型总分析时间不到十分钟。总之,整体式集成、无死体积的 SU-8 微芯片被证明是快速可靠分析复杂蛋白质组样品的有前途的平台。通过对复杂细胞裂解物的肽质量指纹图谱分析和基于单肽测序的蛋白质鉴定,微芯片显示出良好的分析性能。