首页> 外文期刊>Neuron >p120 catenin regulates dendritic spine and synapse development through Rho-family GTPases and cadherins.
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p120 catenin regulates dendritic spine and synapse development through Rho-family GTPases and cadherins.

机译:p120 catenin通过Rho家族的GTPases和钙黏着蛋白调节树突棘和突触的发育。

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摘要

Both the cadherin-catenin complex and Rho-family GTPases have been shown to regulate dendrite development. We show here a role for p120 catenin (p120ctn) in regulating spine and synapse formation in the developing mouse brain. p120catenin gene deletion in hippocampal pyramidal neurons in vivo resulted in reduced spine and synapse densities along dendrites. In addition, p120 catenin loss resulted in reduced cadherin levels and misregulation of Rho-family GTPases, with decreased Rac1 and increased RhoA activity. Analyses in vitro indicate that the reduced spine density reflects aberrant Rho-family GTPase signaling, whereas the effects on spine maturation appear to result from reduced cadherin levels and possibly aberrant Rho-family GTPase signaling. Thus, p120ctn acts as a signal coordinator between cadherins and Rho-family GTPases to regulate cytoskeletal changes required during spine and synapse development.
机译:钙粘蛋白-连环蛋白复合物和Rho家族的GTPases均显示出可调节枝晶的发育。我们在这里显示p120连环蛋白(p120ctn)在调节发育中的小鼠脑中的脊柱和突触形成中的作用。体内海马锥体神经元中p120catenin基因的缺失导致沿树突的脊柱和突触密度降低。此外,p120连环蛋白的损失导致钙黏着蛋白水平降低和Rho家族GTPases的失调,Rac1降低且RhoA活性增加。体外分析表明,降低的脊柱密度反映了异常的Rho家族GTPase信号传导,而对脊柱成熟的影响似乎是由钙黏着蛋白水平降低和可能的异常的Rho家族GTPase信号传导引起的。因此,p120ctn充当钙粘蛋白和Rho家族GTPases之间的信号协调员,以调节脊柱和突触发育过程中所需的细胞骨架变化。

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