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GTP Hydrolysis of TC10 Promotes Neurite Outgrowth through Exocytic Fusion of Rab11- and L1-Containing Vesicles by Releasing Exocyst Component Exo70

机译:TC10的GTP水解通过释放囊外成分Exo70的Rab11和L1包含囊泡的胞外融合促进神经突生长。

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摘要

The use of exocytosis for membrane expansion at nerve growth cones is critical for neurite outgrowth. TC10 is a Rho family GTPase that is essential for specific types of vesicular trafficking to the plasma membrane. Recent studies have shown that TC10 and its effector Exo70, a component of the exocyst tethering complex, contribute to neurite outgrowth. However, the molecular mechanisms of the neuritogenesis-promoting functions of TC10 remain to be established. Here, we propose that GTP hydrolysis of vesicular TC10 near the plasma membrane promotes neurite outgrowth by accelerating vesicle fusion by releasing Exo70. Using Förster resonance energy transfer (FRET)-based biosensors, we show that TC10 activity at the plasma membrane decreased at extending growth cones in hippocampal neurons and nerve growth factor (NGF)-treated PC12 cells. In neuronal cells, TC10 activity at vesicles was higher than its activity at the plasma membrane, and TC10-positive vesicles were found to fuse to the plasma membrane in NGF-treated PC12 cells. Therefore, activity of TC10 at vesicles is presumed to be inactivated near the plasma membrane during neuronal exocytosis. Our model is supported by functional evidence that constitutively active TC10 could not rescue decrease in NGF-induced neurite outgrowth induced by TC10 depletion. Furthermore, TC10 knockdown experiments and colocalization analyses confirmed the involvement of Exo70 in TC10-mediated trafficking in neuronal cells. TC10 frequently resided on vesicles containing Rab11, which is a key regulator of recycling pathways and implicated in neurite outgrowth. In growth cones, most of the vesicles containing the cell adhesion molecule L1 had TC10. Exocytosis of Rab11- and L1-positive vesicles may play a central role in TC10-mediated neurite outgrowth. The combination of this study and our previous work on the role of TC10 in EGF-induced exocytosis in HeLa cells suggests that the signaling machinery containing TC10 proposed here may be broadly used for exocytosis.
机译:使用胞吐作用在神经生长锥处进行膜扩张对于神经突向外生长至关重要。 TC10是Rho家族的GTP酶,对于特定类型的囊泡向质膜的运输至关重要。最近的研究表明,TC10及其效应物Exo70是囊外束缚复合物的组成部分,有助于神经突的生长。但是,TC10促进神经形成的分子机制尚待确定。在这里,我们建议质膜附近的囊泡TC10的GTP水解通过释放Exo70加速囊泡融合来促进神经突向外生长。使用基于Förster共振能量转移(FRET)的生物传感器,我们显示,在海马神经元和神经生长因子(NGF)处理的PC12细胞中,在延伸的生长锥处,质膜的TC10活性降低。在神经元细胞中,囊泡中的TC10活性高于其质膜上的活性,并且在经过NGF处理的PC12细胞中,发现TC10阳性囊泡与质膜融合。因此,推测在神经元胞吐作用期间质膜附近的TC10活性被灭活。我们的模型得到功能性证据的支持,即组成性活性TC10无法挽救TC10耗尽诱导的NGF诱导的神经突增生的减少。此外,TC10敲低实验和共定位分析证实了Exo70参与TC10介导的神经元细胞运输。 TC10经常驻留在含有Rab11的囊泡中,Rab11是循环通路的关键调节因子,并与神经突增生有关。在生长锥中,大多数含有细胞粘附分子L1的囊泡都具有TC10。 Rab11和L1阳性囊泡的胞吐作用可能在TC10介导的神经突增生中起核心作用。这项研究与我们先前关于TC10在HeLa细胞中EGF诱导的胞吐作用中的作用的结合表明,此处提出的含有TC10的信号转导机制可能广泛用于胞吐作用。

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