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Loss-less Nano-fractionator for High Sensitivity High Coverage Proteomics

机译:用于高灵敏度高覆盖率蛋白质组学的无损纳米级分离器

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摘要

Recent advances in mass spectrometry (MS)-based proteomics now allow very deep coverage of cellular proteomes. To achieve near-comprehensive identification and quantification, the combination of a first HPLC-based peptide fractionation orthogonal to the on-line LC-MS/MS step has proven to be particularly powerful. This first dimension is typically performed with milliliter/min flow and relatively large column inner diameters, which allow efficient pre-fractionation but typically require peptide amounts in the milligram range. Here, we describe a novel approach termed “spider fractionator” in which the post-column flow of a nanobore chromatography system enters an eight-port flow-selector rotor valve. The valve switches the flow into different flow channels at constant time intervals, such as every 90 s. Each flow channel collects the fractions into autosampler vials of the LC-MS/MS system. Employing a freely configurable collection mechanism, samples are concatenated in a loss-less manner into 2–96 fractions, with efficient peak separation. The combination of eight fractions with 100 min gradients yields very deep coverage at reasonable measurement time, and other parameters can be chosen for even more rapid or for extremely deep measurements. We demonstrate excellent sensitivity by decreasing sample amounts from 100 μg into the sub-microgram range, without losses attributable to the spider fractionator and while quantifying close to 10,000 proteins. Finally, we apply the system to the rapid automated and in-depth characterization of 12 different human cell lines to a median depth of 11,472 different proteins, which revealed differences recapitulating their developmental origin and differentiation status. The fractionation technology described here is flexible, easy to use, and facilitates comprehensive proteome characterization with minimal sample requirements.
机译:基于质谱(MS)的蛋白质组学的最新进展现在允许细胞蛋白质组的非常深入的覆盖。为了实现近乎全面的鉴定和定量,已证明正交于在线LC-MS / MS步骤进行的第一个基于HPLC的肽分级分离的组合特别有效。该第一尺寸通常以毫升/分钟流量和相对较大的色谱柱内径进行,这允许有效的预分离,但通常需要毫克量的肽量。在这里,我们描述了一种称为“蜘蛛分馏器”的新颖方法,其中纳米孔色谱系统的柱后流进入八端口流选择器转子阀。阀门以固定的时间间隔(例如每90 s)将流量切换到不同的流道中。每个流动通道将馏分收集到LC-MS / MS系统的自动进样器样品瓶中。采用可自由配置的收集机制,以无损失的方式将样品分成2–96个馏分,并进行有效的峰分离。八种馏分与100分钟梯度的组合在合理的测量时间可产生非常深的覆盖范围,并且可以选择其他参数以实现更快或更深的测量。通过将样品量从100μg减少到亚微克范围,我们证明了出色的灵敏度,而不会因蜘蛛分馏器而造成损失,同时定量了近10,000种蛋白质。最后,我们将该系统应用于12种不同人类细胞系的快速自动化和深度表征,平均深度为11,472种不同蛋白质,这揭示了概括其发展起源和分化状态的差异。此处描述的分级分离技术灵活,易于使用,并以最少的样品需求促进了全面的蛋白质组表征。

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