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Inhibition of the RAC/PAK Signaling Axis Enhances the Potency of MAPK Cascade Inhibitors Against Uveal Melanoma.

Journal articles  - Journal Article
Maslov, AA; Trageser, NH; Kichina, JV; Elamir, H; Gardner, E; Teaman, F; Vishwanath, V; Dugas, SM; Heid, J; Maslov, AY; Withers, HG ...
Published in: Biomolecules
October 7, 2025

Uveal melanoma is a melanocyte-derived malignancy of the eye with a high propensity for liver metastasis. Metastatic uveal melanoma is associated with high mortality and is poorly responsive to currently available therapies. Most uveal melanoma cases are driven by activating mutations in GNAQ and GNA11 genes, which convey oncogenic signaling through the mitogen-activated protein kinase (MAPK) pathway. Despite promising early results, safe doses of pharmacological inhibitors of the MAPK cascade failed to effectively control uveal melanoma in human trials. Considering the role of the RAC/PAK signaling axis as a co-regulator of the MAPK cascade, we set forth to investigate whether the efficacy of MAPK cascade inhibitors in pre-clinical models may be enhanced by direct inhibition of RAC and PAK proteins, or by indirect control of RAC via inhibition of guanylate biosynthesis. We observed that pharmacological inhibition of RAC, PAK and the key guanylate biosynthesis enzyme IMPDH significantly synergized with various inhibitors of the MAPK cascade in suppressing oncogenic signaling and the growth of uveal melanoma cells. In a mouse model, the addition of an IMPDH inhibitor to the treatment regimen significantly enhanced the ability of a MAPK cascade inhibitor to improve the survival of tumor-bearing animals. Targeting of the RAC/PAK axis provides a new strategy to increase the efficacy of targeted therapies in uveal melanoma. While RAC and PAK inhibitors are still undergoing pre-clinical development, clinically available inhibitors of IMPDH offer an opportunity to test the efficacy of this novel synergistic combination in the context of human disease.

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Published In

Biomolecules

DOI

EISSN

2218-273X

Publication Date

October 7, 2025

Volume

15

Issue

10

Location

Switzerland

Related Subject Headings

  • rac GTP-Binding Proteins
  • p21-Activated Kinases
  • Xenograft Model Antitumor Assays
  • Uveal Neoplasms
  • Uveal Melanoma
  • Signal Transduction
  • Protein Kinase Inhibitors
  • Mice
  • Melanoma
  • MAP Kinase Signaling System
 

Citation

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Maslov, A. A., Trageser, N. H., Kichina, J. V., Elamir, H., Gardner, E., Teaman, F., … Kandel, E. S. (2025). Inhibition of the RAC/PAK Signaling Axis Enhances the Potency of MAPK Cascade Inhibitors Against Uveal Melanoma. Biomolecules, 15(10). https://doi.org/10.3390/biom15101425
Maslov, Alexei A., Nicholas H. Trageser, Julia V. Kichina, Haya Elamir, Evelyn Gardner, Frances Teaman, Vera Vishwanath, et al. “Inhibition of the RAC/PAK Signaling Axis Enhances the Potency of MAPK Cascade Inhibitors Against Uveal Melanoma.Biomolecules 15, no. 10 (October 7, 2025). https://doi.org/10.3390/biom15101425.
Maslov AA, Trageser NH, Kichina JV, Elamir H, Gardner E, Teaman F, et al. Inhibition of the RAC/PAK Signaling Axis Enhances the Potency of MAPK Cascade Inhibitors Against Uveal Melanoma. Biomolecules. 2025 Oct 7;15(10).
Maslov, Alexei A., et al. “Inhibition of the RAC/PAK Signaling Axis Enhances the Potency of MAPK Cascade Inhibitors Against Uveal Melanoma.Biomolecules, vol. 15, no. 10, Oct. 2025. Pubmed, doi:10.3390/biom15101425.
Maslov AA, Trageser NH, Kichina JV, Elamir H, Gardner E, Teaman F, Vishwanath V, Dugas SM, Heid J, Maslov AY, Withers HG, Bianchi-Smiraglia A, Leonova KI, Nikiforov MA, Kandel ES. Inhibition of the RAC/PAK Signaling Axis Enhances the Potency of MAPK Cascade Inhibitors Against Uveal Melanoma. Biomolecules. 2025 Oct 7;15(10).

Published In

Biomolecules

DOI

EISSN

2218-273X

Publication Date

October 7, 2025

Volume

15

Issue

10

Location

Switzerland

Related Subject Headings

  • rac GTP-Binding Proteins
  • p21-Activated Kinases
  • Xenograft Model Antitumor Assays
  • Uveal Neoplasms
  • Uveal Melanoma
  • Signal Transduction
  • Protein Kinase Inhibitors
  • Mice
  • Melanoma
  • MAP Kinase Signaling System