Neuroscience Research Institute and Department of Neurobiology, Key Laboratory for Neuroscience of Ministry of Education and Health, School of Basic Medical Sciences, Peking University, Beijing 100191, China.
J Neurosci. 2012 Jun 6;32(23):7960-9. doi: 10.1523/JNEUROSCI.5378-11.2012.
Neurons have characteristic dendritic arborization patterns that contribute to information processing. One essential component of dendritic arborization is the formation of a specific number of branches. Although intracellular pathways promoting dendritic growth and branching are being elucidated, the mechanisms that negatively regulate the branching of dendrites remain enigmatic. In this study, using gain-of-function and loss-of-function studies, we show that phospholipase D1 (PLD1) acts as a negative regulator of dendritic branching in cultured hippocampal neurons from embryonic day 18 rat embryos. Overexpression of wild-type PLD1 (WT-PLD1) decreases the complexity of dendrites, whereas knockdown or inhibition of PLD1 increases dendritic branching. We further demonstrated that PLD1 acts downstream of RhoA, one of the small Rho GTPases, to suppress dendritic branching. The restriction of dendritic branching by constitutively active RhoA (V14-RhoA) can be partially rescued by knockdown of PLD1. Moreover, the inhibition of dendritic branching by V14-RhoA and WT-PLD1 can be partially ameliorated by reducing the level of phosphatidic acid (PA), which is the enzymatic product of PLD1. Together, these results suggest that RhoA-PLD1-PA may represent a novel signaling pathway in the restriction of dendritic branching and may thus provide insight into the mechanisms of dendritic morphogenesis.
神经元具有特征性的树突分支模式,有助于信息处理。树突分支的一个重要组成部分是形成特定数量的分支。尽管正在阐明促进树突生长和分支的细胞内途径,但负调控树突分支的机制仍然是个谜。在这项研究中,我们通过功能获得和功能丧失研究表明,磷脂酶 D1(PLD1)在从胚胎第 18 天大鼠胚胎培养的海马神经元中作为树突分支的负调节剂发挥作用。野生型 PLD1(WT-PLD1)的过表达降低了树突的复杂性,而 PLD1 的敲低或抑制增加了树突分支。我们进一步表明,PLD1 作为小 Rho GTPases 之一的 RhoA 的下游分子发挥作用,以抑制树突分支。组成型激活的 RhoA(V14-RhoA)对树突分支的限制可以部分通过敲低 PLD1 来挽救。此外,V14-RhoA 和 WT-PLD1 对树突分支的抑制作用可以通过降低磷脂酸(PA)的水平得到部分改善,PA 是 PLD1 的酶促产物。总之,这些结果表明 RhoA-PLD1-PA 可能代表了限制树突分支的新信号通路,从而为树突形态发生的机制提供了新的见解。