rhoA GTP-Binding Protein

Displaying 1 - 4 of 4CSV
de Queiroz, R. M., Efe, G., Guzman, A., Hashimoto, N., Kawashima, Y., Tanaka, T., Rustgi, A. K., & Prives, C. (2024). Mdm2 requires Sprouty4 to regulate focal adhesion formation and metastasis independent of p53. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-51488-2
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Wojnacki, J., Quassollo, G., Bordenave, M. D., Unsain, N., Martínez, G. F., Szalai, A. M., Pertz, O., Gundersen, G. G., Bartolini, F., Stefani, F. D., Cáceres, A., & Bisbal, M. (2024). Dual spatio-temporal regulation of axon growth and microtubule dynamics by RhoA signaling pathways. Journal of Cell Science, 137(14). https://doi.org/10.1242/jcs.261970
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Zhang, F., Sahu, V., Peng, K., Wang, Y., Li, T., Bala, P., Aitymbayev, D., Sahgal, P., Schaefer, A., Der, C. J., Ryeom, S., Yoon, S., Sethi, N., Bass, A. J., & Zhang, H. (2024). Recurrent RhoGAP gene fusion CLDN18-ARHGAP26 promotes RHOA activation and focal adhesion kinase and YAP-TEAD signalling in diffuse gastric cancer. Gut, 73(8), 1280–1291. https://doi.org/10.1136/gutjnl-2023-329686
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