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Updated: Jul 9, 2025

Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
Overcoming phenotypic switching: targeting protein-protein interactions in cancer
Christos Ladias1, Pavlos Papakotoulas2, Maria Papaioannou3
1Department of Biological Applications and Technology, University of Ioannina, 45110 Ioannina, Epirus, Greece.
Abstract:
Alternative protein-protein interactions (PPIs) arising from mutations or post-translational modifications (PTMs), termed phenotypic switching (PS), are critical for the transmission of alternative pathogenic signals and are particularly significant in cancer. In recent years, PPIs have emerged as promising targets for rational drug design, primarily because their high specificity facilitates targeting of disease-related signaling pathways. However, obstacles exist at the molecular level that arise from the properties of the interaction interfaces and the propensity of small molecule drugs to interact with more than one cleft surface. The difficulty in identifying small molecules that act as activators or inhibitors to counteract the biological effects of mutations raises issues that have not been encountered before. For example, small molecules can bind tightly but may not act as drugs or bind to multiple sites (interaction promiscuity). Another reason is the absence of significant clefts on protein surfaces; if a pocket is present, it may be too small, or its geometry may prevent binding. PS, which arises from oncogenic (alternative) signaling, causes drug resistance and forms the basis for the systemic robustness of tumors. In this review, the properties of PPI interfaces relevant to the design and development of targeting drugs are examined. In addition, the interactions between three tyrosine kinase inhibitors (TKIs) employed as drugs are discussed. Finally, potential novel targets of one of these drugs were identified in silico.
Insights
Phenotypic switching (PS) drives cancer by altering protein-protein interactions (PPIs). Targeting these PPIs offers drug design opportunities, but challenges like drug promiscuity and interface properties remain significant hurdles.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Alternative protein-protein interactions (PPIs), known as phenotypic switching (PS), are crucial for pathogenic signaling and cancer progression.
- PS, driven by mutations or post-translational modifications (PTMs), contributes to tumor robustness and drug resistance.
Purpose of the Study:
- To review the properties of PPI interfaces relevant for drug design and development.
- To examine the interactions of three tyrosine kinase inhibitors (TKIs) and identify potential novel drug targets.
Main Methods:
- Literature review of PPI interface properties.
- Analysis of interactions involving three tyrosine kinase inhibitors.
- In silico identification of potential novel drug targets.
Main Results:
- PPIs are promising drug targets due to their specificity, but challenges like interaction promiscuity and unsuitable binding sites exist.
- The review examines properties of PPI interfaces critical for drug development.
- Novel targets for a TKI were identified using in silico methods.
Conclusions:
- Despite challenges, targeting PPIs holds significant therapeutic potential in cancer.
- Understanding PPI interface properties is key to overcoming drug design obstacles.
- In silico approaches can aid in discovering new therapeutic strategies for targeting PPIs.
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