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A proximity proteomics pipeline with improved reproducibility and throughput.

Authors :
Zhong X
Li Q
Polacco BJ
Patil T
Marley A
Foussard H
Khare P
Vartak R
Xu J
DiBerto JF
Roth BL
Eckhardt M
von Zastrow M
Krogan NJ
Hüttenhain R
Source :
Molecular systems biology [Mol Syst Biol] 2024 Aug; Vol. 20 (8), pp. 952-971. Date of Electronic Publication: 2024 Jul 01.
Publication Year :
2024

Abstract

Proximity labeling (PL) via biotinylation coupled with mass spectrometry (MS) captures spatial proteomes in cells. Large-scale processing requires a workflow minimizing hands-on time and enhancing quantitative reproducibility. We introduced a scalable PL pipeline integrating automated enrichment of biotinylated proteins in a 96-well plate format. Combining this with optimized quantitative MS based on data-independent acquisition (DIA), we increased sample throughput and improved protein identification and quantification reproducibility. We applied this pipeline to delineate subcellular proteomes across various compartments. Using the 5HT <subscript>2A</subscript> serotonin receptor as a model, we studied temporal changes of proximal interaction networks induced by receptor activation. In addition, we modified the pipeline for reduced sample input to accommodate CRISPR-based gene knockout, assessing dynamics of the 5HT <subscript>2A</subscript> network in response to perturbation of selected interactors. This PL approach is universally applicable to PL proteomics using biotinylation-based PL enzymes, enhancing throughput and reproducibility of standard protocols.<br /> (© 2024. The Author(s).)

Details

Language :
English
ISSN :
1744-4292
Volume :
20
Issue :
8
Database :
MEDLINE
Journal :
Molecular systems biology
Publication Type :
Academic Journal
Accession number :
38951684
Full Text :
https://doi.org/10.1038/s44320-024-00049-2