Growing ecosystem of deep learning methods for modeling protein-protein interactions.

Protein Eng Des Sel

Department of Systems Biology, Columbia University, New York, NY 10032, USA.

Published: January 2023

AI Article Synopsis

  • Numerous cellular functions depend on protein-protein interactions, but studying these interactions is complicated due to the variety of mechanisms involved.
  • Deep learning is being utilized to model these interactions more effectively by combining experimental data and foundational biophysical principles.
  • Recent advancements include using techniques like representation learning, geometric deep learning, and generative modeling to improve predictions and design novel protein assemblies, while also addressing ongoing challenges in the field.

Article Abstract

Numerous cellular functions rely on protein-protein interactions. Efforts to comprehensively characterize them remain challenged however by the diversity of molecular recognition mechanisms employed within the proteome. Deep learning has emerged as a promising approach for tackling this problem by exploiting both experimental data and basic biophysical knowledge about protein interactions. Here, we review the growing ecosystem of deep learning methods for modeling protein interactions, highlighting the diversity of these biophysically informed models and their respective trade-offs. We discuss recent successes in using representation learning to capture complex features pertinent to predicting protein interactions and interaction sites, geometric deep learning to reason over protein structures and predict complex structures, and generative modeling to design de novo protein assemblies. We also outline some of the outstanding challenges and promising new directions. Opportunities abound to discover novel interactions, elucidate their physical mechanisms, and engineer binders to modulate their functions using deep learning and, ultimately, unravel how protein interactions orchestrate complex cellular behaviors.

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Source
http://dx.doi.org/10.1093/protein/gzad023DOI Listing

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