International Journal of Molecular Sciences (Mar 2024)

Computational Characterization of Membrane Proteins as Anticancer Targets: Current Challenges and Opportunities

  • Marina Gorostiola González,
  • Pepijn R. J. Rakers,
  • Willem Jespers,
  • Adriaan P. IJzerman,
  • Laura H. Heitman,
  • Gerard J. P. van Westen

DOI
https://doi.org/10.3390/ijms25073698
Journal volume & issue
Vol. 25, no. 7
p. 3698

Abstract

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Cancer remains a leading cause of mortality worldwide and calls for novel therapeutic targets. Membrane proteins are key players in various cancer types but present unique challenges compared to soluble proteins. The advent of computational drug discovery tools offers a promising approach to address these challenges, allowing for the prioritization of “wet-lab” experiments. In this review, we explore the applications of computational approaches in membrane protein oncological characterization, particularly focusing on three prominent membrane protein families: receptor tyrosine kinases (RTKs), G protein-coupled receptors (GPCRs), and solute carrier proteins (SLCs). We chose these families due to their varying levels of understanding and research data availability, which leads to distinct challenges and opportunities for computational analysis. We discuss the utilization of multi-omics data, machine learning, and structure-based methods to investigate aberrant protein functionalities associated with cancer progression within each family. Moreover, we highlight the importance of considering the broader cellular context and, in particular, cross-talk between proteins. Despite existing challenges, computational tools hold promise in dissecting membrane protein dysregulation in cancer. With advancing computational capabilities and data resources, these tools are poised to play a pivotal role in identifying and prioritizing membrane proteins as personalized anticancer targets.

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