Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, United States.
J Am Soc Mass Spectrom. 2021 Jun 2;32(6):1519-1529. doi: 10.1021/jasms.1c00077. Epub 2021 May 5.
The development of streamlined and high-throughput sample processing workflows is important for capitalizing on emerging advances and innovations in mass spectrometry-based applications. While the adaptation of new technologies and improved methodologies is fast paced, automation of upstream sample processing often lags. Here we have developed and implemented a semiautomated paramagnetic bead-based platform for isobaric tag sample preparation. We benchmarked the robot-assisted platform by comparing the protein abundance profiles of six common parental laboratory yeast strains in triplicate TMTpro16-plex experiments against an identical set of experiments in which the samples were manually processed. Both sets of experiments quantified similar numbers of proteins and peptides with good reproducibility. Using these data, we constructed an interactive website to explore the proteome profiles of six yeast strains. We also provide the community with open-source templates for automating routine proteomics workflows on an opentrons OT-2 liquid handler. The robot-assisted platform offers a versatile and affordable option for reproducible sample processing for a wide range of protein profiling applications.
开发简化和高通量的样品处理工作流程对于利用基于质谱的应用中的新兴进展和创新非常重要。虽然新技术的适应和改进方法的步伐很快,但上游样品处理的自动化往往滞后。在这里,我们开发并实施了一种基于顺磁珠的半自动化同位标记标签样品制备平台。我们通过将六株常见的亲本实验室酵母菌株的蛋白质丰度图谱在三重复 TMTpro16-plex 实验中与手动处理的相同实验进行比较,对机器人辅助平台进行了基准测试。两组实验都定量了相似数量的蛋白质和肽,具有良好的重现性。使用这些数据,我们构建了一个交互式网站,以探索六种酵母菌株的蛋白质组图谱。我们还为社区提供了自动化 opentrons OT-2 液体处理机上常规蛋白质组学工作流程的开源模板。该机器人辅助平台为广泛的蛋白质谱分析应用提供了一种通用且经济实惠的可重复样品处理选择。