Context-Dependent Roles of Rnd3 in Cancer: Revisiting a Functional Paradox
Abstract
Rnd3 is an atypical member of the Rho GTPase family whose activity is mainly regulated by expression, localization and protein stability rather than canonical GDP/GTP cycling. In cancer, Rnd3 has been described both as a tumor suppressor and as a tumor-promoting factor, creating an apparent functional paradox. We propose that this paradox is resolved by a mechanistic invariant: Rnd3 exerts a conserved inhibition of RhoA/ROCK1-dependent actomyosin contractility, whose phenotypic output is redirected by context-specific accessory effectors rather than reversed. In this review, we revisit this paradox by integrating evidence from mechanistic studies, tumor models and patient-associated datasets. We propose that Rnd3 should not be interpreted through a binary oncogene/tumor-suppressor framework, but rather as a context-dependent regulator of tumor cell state. In many tumor settings, Rnd3 repression or loss of Rnd3 function favors proliferation, apoptosis resistance and therapy resistance through pathways involving Notch, NF-κB, EGFR/ERK, EZH2-dependent chromatin regulation, m6A-mediated RNA control, microRNAs and chaperone-mediated autophagy. However, in selected contexts, including RTK-driven glioblastoma, hepatocellular carcinoma, non-small-cell lung cancer, melanoma and gastric cancer, Rnd3 may support tumor fitness, migration or invasive plasticity. We therefore propose a functional stratification model in which Rnd3 output depends on the biological process, tumor lineage, pathway activity and mechanical state of the cell.