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Inhibition of the RhoA GTPase Activity Increases Sensitivity of Melanoma Cells to UV Radiation Effects

机译:RhoA GTPase活性的抑制增加了黑色素瘤细胞对紫外线辐射作用的敏感性。

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摘要

Ultraviolet radiation is the main cause of DNA damage to melanocytes and development of melanoma, one of the most lethal human cancers, which leads to metastasis due to uncontrolled cell proliferation and migration. These phenotypes are mediated by RhoA, a GTPase overexpressed or overactivated in highly aggressive metastatic tumors that plays regulatory roles in cell cycle progression and cytoskeleton remodeling. This work explores whether the effects of UV on DNA damage, motility, proliferation, and survival of human metastatic melanoma cells are mediated by the RhoA pathway. Mutant cells expressing dominant-negative (MeWo-RhoA-N19) or constitutively active RhoA (MeWo-RhoA-V14) were generated and subjected to UV radiation. A slight reduction in migration and invasion was observed in MeWo and MeWo-RhoA-V14 cells but not in MeWo-RhoA-N19 cells, which presented inefficient motility and invasiveness associated with stress fibers fragmentation. Proliferation and survival of RhoA-deficient cells were drastically reduced by UV compared to cells displaying normal or high RhoA activity, suggesting increased sensitivity to UV. Loss of RhoA activity also caused less efficient DNA repair, with elevated levels of DNA lesions such as strand breaks and cyclobutane pyrimidine dimers (CPDs). Thus, RhoA mediates genomic stability and represents a potential target for sensitizing metastatic tumors to genotoxic agents.
机译:紫外线是DNA损伤黑色素细胞和黑色素瘤发展的主要原因,黑色素瘤是最致命的人类癌症之一,由于不受控制的细胞增殖和迁移,导致转移。这些表型由RhoA介导,RhoA是在高度侵袭性转移性肿瘤中过度表达或过度活化的GTP酶,在细胞周期进程和细胞骨架重塑中起调节作用。这项工作探讨了紫外线对人转移性黑色素瘤细胞DNA损伤,运动性,增殖和存活的影响是否由RhoA途径介导。产生表达显性阴性(MeWo-RhoA-N19)或组成型活性RhoA(MeWo-RhoA-V14)的突变细胞,并对其进行UV辐射。在MeWo和MeWo-RhoA-V14细胞中观察到迁移和侵袭的轻微减少,但在MeWo-RhoA-N19细胞中观察不到,这与应力纤维断裂相关的运动性和侵袭性低下。与显示正常或高RhoA活性的细胞相比,UV显着降低了RhoA缺陷细胞的增殖和存活,表明对UV的敏感性增加。 RhoA活性的丧失也导致DNA修复效率降低,DNA损伤水平升高,例如链断裂和环丁烷嘧啶二聚体(CPD)。因此,RhoA介导基因组稳定性,并代表潜在的目标,使转移性肿瘤对遗传毒性剂敏感。

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