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Intracellular trafficking of integrins in cancer cells
Yasuhito Onodera1, Jin-Min Nam, Hisataka Sabe
1Department of Molecular Biology Hokkaido University Graduate School of Medicine, Sapporo 060-8638, Japan.
Abstract:
Integrins are heterodimeric cell surface receptors, which principally mediate the interaction between cells and their extracellular microenvironments. Because of their pivotal roles in cancer proliferation, survival, invasion and metastasis, integrins have been recognized as promising targets for cancer treatment. As is the case with other receptors, the localization of integrins on the cell surface has provided opportunities to block their functions by various inhibitory monoclonal antibodies. A number of small molecule agents blocking integrin-ligand binding have also been established, and some such agents are currently on the market or in clinical trials for some diseases including cancer. This review exclusively focuses on another strategy for cancer therapy, which comes from the obligate localization of integrins on the cell surface; targeting the intracellular trafficking of integrins. A number of studies have shown the essential roles of integrin trafficking in hallmarks of cancer, such as activation of oncogenic signaling pathways as well as acquisition of invasiveness. Recent findings have shown that increased integrin recycling activity is associated with some types of gain-of-function mutations of p53, a common feature of diverse types of cancers, which also indicates that targeting integrin recycling could be widely applicable and effective against many cancers. We also discuss possible therapeutic contexts where integrin trafficking can be effectively targeted, and what molecular interfaces may hopefully be druggable.
Insights
Targeting integrin trafficking offers a novel cancer therapy strategy. This approach leverages integrins
Area of Science:
- Cell biology
- Oncology
- Molecular medicine
Background:
- Integrins are cell surface receptors mediating cell-extracellular matrix interactions, crucial for cancer progression.
- Current cancer therapies target integrins via antibodies or small molecules blocking ligand binding.
- Integrins' cell surface localization presents opportunities for therapeutic intervention.
Purpose of the Study:
- To explore targeting intracellular integrin trafficking as a novel cancer therapy strategy.
- To review the role of integrin trafficking in cancer hallmarks and therapeutic potential.
Main Methods:
- Review of existing literature on integrin function, trafficking, and cancer biology.
- Analysis of studies linking integrin recycling to oncogenic signaling and invasiveness.
- Discussion of potential therapeutic targets and druggable molecular interfaces.
Main Results:
- Integrin trafficking is essential for cancer hallmarks like oncogenic signaling and invasiveness.
- Increased integrin recycling correlates with p53 gain-of-function mutations in various cancers.
- Targeting integrin recycling shows broad applicability and efficacy potential against diverse cancers.
Conclusions:
- Targeting intracellular integrin trafficking represents a promising, broadly applicable cancer therapy approach.
- Further research into druggable molecular interfaces for integrin trafficking is warranted.
- This strategy may overcome limitations of current integrin-targeting therapies.
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