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Published on: February 24, 2023
Vinculin activators target integrins from within the cell to increase melanoma sensitivity to chemotherapy
Elke S Nelson1, Andrew W Folkmann, Michael D Henry
1Department of Biochemistry, Roy J. and Lucille A. Carver College of Medicine, Iowa City, IA 52242, USA.
Abstract:
Metastatic melanoma is an aggressive skin disease for which there are no effective therapies. Emerging evidence indicates that melanomas can be sensitized to chemotherapy by increasing integrin function. Current integrin therapies work by targeting the extracellular domain, resulting in complete gains or losses of integrin function that lead to mechanism-based toxicities. An attractive alternative approach is to target proteins, such as vinculin, that associate with the integrin cytoplasmic domains and regulate its ligand-binding properties. Here, we report that a novel reagent, denoted vinculin-activating peptide or VAP, increases integrin activity from within the cell, as measured by elevated (i) numbers of active integrins, (ii) adhesion of cells to extracellular matrix ligands, (iii) numbers of cell-matrix adhesions, and (iv) downstream signaling. These effects are dependent on both integrins and a key regulatory residue A50 in the vinculin head domain. We further show that VAP dramatically increases the sensitivity of melanomas to chemotherapy in clonal growth assays and in vivo mouse models of melanoma. Finally, we show that the increase in chemosensitivity results from increases in DNA damage-induced apoptosis in a p53-dependent manner. Collectively, these findings show that integrin function can be manipulated from within the cell and validate integrins as a new therapeutic target for the treatment of chemoresistant melanomas.
Insights
A novel vinculin-activating peptide (VAP) enhances integrin function internally, increasing melanoma sensitivity to chemotherapy. This approach targets integrins within the cell, offering a new strategy for chemoresistant melanoma treatment.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Metastatic melanoma lacks effective therapies.
- Current integrin therapies have toxicities due to targeting extracellular domains.
- Targeting intracellular proteins like vinculin offers an alternative approach.
Purpose of the Study:
- To investigate a novel reagent, vinculin-activating peptide (VAP), for modulating integrin function intracellularly.
- To assess VAP's effect on melanoma sensitivity to chemotherapy.
- To elucidate the mechanism by which VAP enhances chemosensitivity.
Main Methods:
- Treatment of melanoma cells and mouse models with VAP.
- Measurement of integrin activity, cell adhesion, and downstream signaling.
- Assessment of VAP's impact on chemotherapy response using clonal growth assays and in vivo models.
- Analysis of apoptosis induction and p53 dependency.
Main Results:
- VAP significantly increased active integrin numbers, cell adhesion, and downstream signaling.
- VAP enhanced melanoma sensitivity to chemotherapy in vitro and in vivo.
- Increased chemosensitivity was linked to enhanced DNA damage-induced apoptosis in a p53-dependent manner.
Conclusions:
- Integrin function can be effectively modulated from within the cell using VAP.
- VAP represents a promising therapeutic strategy for chemoresistant metastatic melanoma.
- Targeting intracellular integrin-associated proteins offers a novel avenue for cancer therapy.
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