English

Mapping Differential Protein-Protein Interaction Networks using Affinity Purification Mass Spectrometry

Quantitative Methods 2024-05-17 v1 Molecular Networks

Abstract

Proteins congregate into complexes to perform fundamental cellular functions. Phenotypic outcomes, in health and disease, are often mechanistically driven by the remodeling of protein complexes by protein coding mutations or cellular signaling changes in response to molecular cues. Here, we present an affinity purification mass spectrometry (APMS) proteomics protocol to quantify and visualize global changes in protein protein interaction (PPI) networks between pairwise conditions. We describe steps for expressing affinity tagged bait proteins in mammalian cells, identifying purified protein complexes, quantifying differential PPIs, and visualizing differential PPI networks. Specifically, this protocol details steps for designing affinity tagged bait gene constructs, transfection, affinity purification, mass spectrometry sample preparation, data acquisition, database search, data quality control, PPI confidence scoring, cross run normalization, statistical data analysis, and differential PPI visualization. Our protocol discusses caveats and limitations with applicability across cell types and biological areas.

Keywords

Cite

@article{arxiv.2405.09699,
  title  = {Mapping Differential Protein-Protein Interaction Networks using Affinity Purification Mass Spectrometry},
  author = {Prashant Kaushal and Manisha R. Ummadi and Gwendolyn M. Jang and Yennifer Delgado and Sara K. Makanani and Sophie F. Blanc and Decan M. Winters and Jiewei Xu and Benjamin Polacco and Yuan Zhou and Erica Stevenson and Manon Eckhardt and Lorena Zuliani-Alvarez and Robyn Kaake and Danielle L. Swaney and Nevan Krogan and Mehdi Bouhaddou},
  journal= {arXiv preprint arXiv:2405.09699},
  year   = {2024}
}

Comments

29 pages, 3 figures

R2 v1 2026-06-28T16:28:49.275Z