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Updated: Oct 8, 2025

Characterization of Cell Membrane Extensions and Studying Their Roles in Cancer Cell Adhesion Dynamics
Published on: March 26, 2018
Susceptibility of cytoskeletal-associated proteins for tumor progression
Abiola Abdulrahman Ayanlaja1,2, Xiaoliang Hong1, Bo Cheng3
1Public Experimental Laboratory, Department of Neurobiology and Anatomy, Xuzhou Medical University, Xuzhou, 221004, Jiangsu, China.
Abstract:
The traditional functions of cytoskeletal-associated proteins (CAPs) in line with polymerization and stabilization of the cytoskeleton have evolved and are currently underrated in oncology. Although therapeutic drugs have been developed to target the cytoskeletal components directly in cancer treatment, several recently established therapeutic agents designed for new targets block the proliferation of cancer cells and suppress resistance to existing target agents. It would seem like these targets only work toward inhibiting the polymerization of cytoskeletal components or hindering mitotic spindle formation in cancer cells, but a large body of literature points to CAPs and their culpability in cell signaling, molecular conformation, organelle trafficking, cellular metabolism, and genomic modifications. Here, we review those underappreciated functions of CAPs, and we delineate the implications of cellular signaling instigated by evasive properties induced by aberrant expression of CAPs in response to stress or failure to exert normal functions. We present an analogy establishing CAPs as vulnerable targets for cancer systems and credible oncotargets. This review establishes a paradigm in which the cancer machinery may commandeer the conventional functions of CAPs for survival, drug resistance, and energy generation; an interesting feature overdue for attention.
Insights
Cytoskeletal-associated proteins (CAPs) have crucial, underappreciated roles in cancer beyond structural support. Targeting these proteins offers new strategies for cancer therapy and overcoming drug resistance.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Cytoskeletal-associated proteins (CAPs) traditionally stabilize the cytoskeleton.
- Their roles in cancer are increasingly recognized as significant and multifaceted.
- Existing cancer therapies targeting the cytoskeleton have limitations.
Purpose of the Study:
- To review the underappreciated functions of CAPs in cancer.
- To explore the implications of aberrant CAPs expression in cancer signaling and evasion.
- To establish CAPs as credible oncotargets.
Main Methods:
- Literature review of established and emerging research on CAPs in oncology.
- Analysis of CAPs' roles in cell signaling, metabolism, and genomic stability.
- Exploration of CAPs' involvement in cancer survival and drug resistance mechanisms.
Main Results:
- CAPs are implicated in cell signaling, molecular conformation, organelle trafficking, metabolism, and genomic modifications.
- Aberrant CAPs expression contributes to cancer cell evasive properties and stress responses.
- Cancer cells hijack CAPs for survival, drug resistance, and energy generation.
Conclusions:
- CAPs represent vulnerable and credible oncotargets.
- Understanding CAPs' non-structural functions is crucial for novel cancer therapeutic strategies.
- Targeting CAPs offers a paradigm shift in cancer treatment, addressing survival and resistance.
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