Centro de Investigación del Cáncer and Instituto de Biología Molecular y Celular del Cáncer, Consejo Superior de Investigaciones Científicas, University of Salamanca, Campus Unamuno, E-37007 Salamanca, Spain.
Mol Biol Cell. 2010 Mar 15;21(6):1125-39. doi: 10.1091/mbc.e09-04-0292. Epub 2010 Jan 20.
Vav3 is a guanosine diphosphate/guanosine triphosphate exchange factor for Rho/Rac GTPases that has been involved in functions related to the hematopoietic system, bone formation, cardiovascular regulation, angiogenesis, and axon guidance. We report here that Vav3 is expressed at high levels in Purkinje and granule cells, suggesting additional roles for this protein in the cerebellum. Consistent with this hypothesis, we demonstrate using Vav3-deficient mice that this protein contributes to Purkinje cell dendritogenesis, the survival of granule cells of the internal granular layer, the timely migration of granule cells of the external granular layer, and to the formation of the cerebellar intercrural fissure. With the exception of the latter defect, the dysfunctions found in Vav3(-/-) mice only occur at well-defined postnatal developmental stages and disappear, or become ameliorated, in older animals. Vav2-deficient mice do not show any of those defects. Using primary neuronal cultures, we show that Vav3 is important for dendrite branching, but not for primary dendritogenesis, in Purkinje and granule cells. Vav3 function in the cerebellum is functionally relevant, because Vav3(-/-) mice show marked motor coordination and gaiting deficiencies in the postnatal period. These results indicate that Vav3 function contributes to the timely developmental progression of the cerebellum.
Vav3 是 Rho/Rac GTPases 的鸟嘌呤二磷酸/鸟嘌呤三磷酸交换因子,参与与造血系统、骨形成、心血管调节、血管生成和轴突导向相关的功能。我们在这里报告,Vav3 在浦肯野细胞和颗粒细胞中高水平表达,表明该蛋白在小脑中有额外的作用。与这一假设一致,我们使用 Vav3 缺陷型小鼠证明,该蛋白有助于浦肯野细胞树突发生、颗粒细胞内层的存活、颗粒细胞外颗粒层的适时迁移以及小脑中间裂的形成。除了后者的缺陷外,在 Vav3(-/-) 小鼠中发现的功能障碍仅在特定的出生后发育阶段发生,并在老年动物中消失或减轻。Vav2 缺陷型小鼠没有表现出任何这些缺陷。使用原代神经元培养物,我们表明 Vav3 对浦肯野细胞和颗粒细胞中的树突分支很重要,但对初级树突发生不重要。Vav3 在小脑中的功能是功能相关的,因为 Vav3(-/-) 小鼠在出生后时期表现出明显的运动协调和步态缺陷。这些结果表明 Vav3 功能有助于小脑的适时发育进展。