首页> 外文期刊>Journal of proteome research >Third-Generation Electrokinetically Pumped Sheath-Flow Nanospray Interface with Improved Stability and Sensitivity for Automated Capillary Zone Electrophoresis-Mass Spectrometry Analysis of Complex Proteome Digests
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Third-Generation Electrokinetically Pumped Sheath-Flow Nanospray Interface with Improved Stability and Sensitivity for Automated Capillary Zone Electrophoresis-Mass Spectrometry Analysis of Complex Proteome Digests

机译:具有增强的稳定性和灵敏度的第三代电动泵浦鞘流纳米喷雾界面,用于复杂蛋白质组摘要的自动毛细管区带电泳-质谱分析。

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We have reported a set of electrokinetically pumped sheath flow nanoelectrospray interfaces to couple capillary zone electrophoresis with mass spectrometry. A separation capillary is threaded through a cross into a glass emitter: A side arm provides fluidic contact with a sheath buffer reservoir that is Connected to a power supply. The potential applied to the sheath buffer drives electro-osmosis in the emitter to pump the sheath fluid at nanoliter per minute rates. Our first-generation interface placed a flat, tipped capillary in the emitter. Sensitivity was inversely related to orifice size and to the distance from the capillary tip to the emitter orifice. A second-generation interface used a capillary with an etched tip that allowed the capillary exit to approach within a few hundred micrometers of the emitter orifice, resulting in a significant increase in sensitivity. In both the first- and second-generation interfaces, the emitter diameter was typically 8 tun; these narrow orifices were susceptible to plugging and tended to have limited lifetime. We now repot a third-generation interface that employs a larger diameter emitter orifice with very short distance between the capillary tip and the emitter orifice. This Modified interface is much mote robust and produces much longer lifetime than our previous designs with no loss in sensitivity. We evaluated the third-generation interface for 5000 min (127 runs, 3.5 days) repetitive analysis of bovine serum albumin digest using an uncoated capillary. We observed a 10% relative standard deviation in peak area, an average of 160 000 theoretical plates, and very low carry-over (much less than 1%). We employed a linear-poiyacrylamide (LPA)-coated capillary for single:shot, bottom-up proteomic analysis of 300 ng of Xenopus laevis fertilized egg proteome digest and identified 1245 protein groups and 4038 peptides in a 110 min separation using an LTQ-Orbitrap Velos mass spectrometer; peak capacity was similar to 330. The proteome data set using this third-generation interface-baSed CZE-MS/MS is similar in size to that generated using a commercial ultraperformance liquid chromatographic analysis of the same sample with the same mass spectrometer and similar analysis time.
机译:我们已经报道了一组电动泵鞘流纳米电喷雾界面,以耦合毛细管区带电泳与质谱。分离毛细管穿过十字架穿过玻璃发射器:侧臂提供与连接至电源的护套缓冲液储存器的流体接触。施加到护套缓冲液的电势驱动发射极中的电渗,以每分钟纳升的速率泵送护套液。我们的第一代接口在发射器中放置了一个扁平的尖细毛细管。灵敏度与孔口大小以及从毛细管尖端到发射孔的距离成反比。第二代接口使用了带有蚀刻尖端的毛细管,该毛细管允许毛细管出口接近发射孔的几百微米以内,从而大大提高了灵敏度。在第一代和第二代接口中,发射器直径通常为8 tun;这些狭窄的孔口容易堵塞并且使用寿命有限。现在,我们提出了第三代接口,该接口采用了较大直径的发射孔,而毛细管尖端和发射孔之间的距离非常短。与我们以前的设计相比,此修改后的接口具有极高的鲁棒性,并且使用寿命更长,并且不会降低灵敏度。我们使用未覆盖的毛细管对牛血清白蛋白消化液进行了5000分钟(127次运行,3.5天)的重复分析,评估了第三代接口。我们观察到峰面积的相对标准偏差为10%,平均160,000个理论塔板,并且残留极低(远远小于1%)。我们使用线性聚丙烯酰胺(LPA)涂层的毛细管对300 ng Xenopus laevis受精卵蛋白质组消化物进行单次,自下而上的蛋白质组分析,并使用LTQ-Orbitrap在110分钟的分离过程中鉴定了1245个蛋白质组和4038个肽段Velos质谱仪;峰容量类似于330。使用此第三代基于界面的CZE-MS / MS的蛋白质组数据集的大小与使用具有相同质谱仪和相似分析的相同样品的商业超高效液相色谱分析所产生的大小相似。时间。

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