Proteomics

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A Semi-automated Paramagnetic Bead-based Platform for Isobaric Tag Sample Preparation


ABSTRACT: 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 semi-automated 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.

INSTRUMENT(S): Orbitrap Eclipse

ORGANISM(S): Saccharomyces Cerevisiae (baker's Yeast)

SUBMITTER: Joao Paulo  

LAB HEAD: Joao A. Paulo

PROVIDER: PXD024282 | Pride | 2022-01-06

REPOSITORIES: Pride

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Publications

A Semiautomated Paramagnetic Bead-Based Platform for Isobaric Tag Sample Preparation.

Liu Xinyue X   Gygi Steven P SP   Paulo Joao A JA  

Journal of the American Society for Mass Spectrometry 20210505 6


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 compar  ...[more]

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