Chen Hongxin, Firestein Bonnie L
Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, New Jersey 08854-8082, USA.
J Neurosci. 2007 Aug 1;27(31):8378-86. doi: 10.1523/JNEUROSCI.0872-07.2007.
The way a dendrite is patterned determines how a neuron will receive information. The Rho GTPases have been reported to play increasingly well defined roles in determining dendritic branch and spine development and morphology. Much is known about how these small GTPases regulate the actin cytoskeleton; however, very little is known about how they alter the microtubule cytoskeleton. Our laboratory previously cloned and characterized cypin, a guanine deaminase that increases dendrite number by binding to tubulin heterodimers and promoting microtubule assembly. In the present study, we show that cypin and RhoA are part of a common pathway that regulates dendrite number. Inhibition of Rho kinase activity does not affect cypin-mediated dendrite branching. Furthermore, cypin does not affect the activity of RhoA, as measured by GTP binding to RhoA. In fact, activated RhoA acts to inhibit cypin protein expression and, by doing so, decreases dendrite number. In addition, this decrease in cypin protein occurs via a translation-dependent mechanism. Together, our data suggest that cypin acts downstream of the small GTPase RhoA to regulate dendrite branching in hippocampal neurons, providing a novel mechanism for RhoA action on microtubule dynamics.
树突的形成方式决定了神经元接收信息的方式。据报道,Rho GTP酶在决定树突分支、棘突发育和形态方面发挥着越来越明确的作用。关于这些小GTP酶如何调节肌动蛋白细胞骨架,人们已经了解很多;然而,对于它们如何改变微管细胞骨架却知之甚少。我们实验室之前克隆并鉴定了cypin,一种鸟嘌呤脱氨酶,它通过与微管蛋白异二聚体结合并促进微管组装来增加树突数量。在本研究中,我们表明cypin和RhoA是调节树突数量的共同途径的一部分。抑制Rho激酶活性并不影响cypin介导的树突分支。此外,通过与RhoA结合的GTP测量,cypin并不影响RhoA的活性。事实上,激活的RhoA会抑制cypin蛋白表达,从而减少树突数量。此外,cypin蛋白的这种减少是通过一种依赖翻译的机制发生的。总之,我们的数据表明,cypin在小GTP酶RhoA的下游发挥作用,以调节海马神经元中的树突分支,为RhoA对微管动力学的作用提供了一种新机制。