Departments of Psychiatry and Ophthalmology, The University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
J Neurosci. 2011 Aug 31;31(35):12426-36. doi: 10.1523/JNEUROSCI.0685-11.2011.
Brain-derived neurotrophic factor (BDNF) and its cognate receptor, TrkB, regulate a wide range of cellular processes, including dendritic spine formation and functional synapse plasticity. However, the signaling mechanisms that link BDNF-activated TrkB to F-actin remodeling enzymes and dendritic spine morphological plasticity remain poorly understood. We report here that BDNF/TrkB signaling in neurons activates the Vav family of Rac/RhoA guanine nucleotide exchange factors through a novel TrkB-dependent mechanism. We find that Vav is required for BDNF-stimulated Rac-GTP production in cortical and hippocampal neurons. Vav is partially enriched at excitatory synapses in the postnatal hippocampus but does not appear to be required for normal dendritic spine density. Rather, we observe significant reductions in both BDNF-induced, rapid, dendritic spine head growth and in CA3-CA1 theta burst-stimulated long-term potentiation in Vav-deficient mouse hippocampal slices, suggesting that Vav-dependent regulation of dendritic spine morphological plasticity facilitates normal functional synapse plasticity.
脑源性神经营养因子(BDNF)及其同源受体 TrkB 调节广泛的细胞过程,包括树突棘形成和功能性突触可塑性。然而,将 BDNF 激活的 TrkB 与 F-肌动蛋白重塑酶和树突棘形态可塑性联系起来的信号机制仍知之甚少。我们在这里报告,神经元中的 BDNF/TrkB 信号通过一种新的 TrkB 依赖性机制激活 Vav 家族的 Rac/RhoA GEF。我们发现 Vav 是 BDNF 刺激皮质和海马神经元中 Rac-GTP 产生所必需的。Vav 在出生后海马体的兴奋性突触中部分富集,但似乎不是正常树突棘密度所必需的。相反,我们观察到 Vav 缺陷型小鼠海马切片中 BDNF 诱导的快速树突棘头生长和 CA3-CA1 爆发刺激长时程增强显著减少,表明 Vav 依赖性调节树突棘形态可塑性有助于正常功能突触可塑性。