首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >The anti-invasive compound motuporamine C is a robust stimulator of neuronal growth cone collapse.
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The anti-invasive compound motuporamine C is a robust stimulator of neuronal growth cone collapse.

机译:抗侵入性化合物motuporamine C是神经元生长锥塌陷的有力刺激剂。

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摘要

Neuronal outgrowth is a fundamental process for normal development of the nervous system. Despite recent advances, the molecular mechanisms governing neuronal motility are still poorly understood. To provide insight into the intracellular signaling mechanisms required for neuronal outgrowth, we have characterized the effects of a compound previously identified for its anti-motility effects on transformed cells. We show that this compound, motuporamine C, acts as a robust inhibitor of chick neurite outgrowth in a dose-dependent fashion. Furthermore, in the presence of motuporamine C, growth cone collapse is observed, followed by neurite retraction. After removal, growth cones re-extend lamellipodial and filopodial processes and re-establish motility. Neurons exposed to motuporamine C exhibit a significant upregulation of active Rho-GTP. Additionally, effector-blocking experiments using Rho and Rho-associated kinase inhibitors indicate that the Rho pathway plays a critical role in motuporamine C-mediated growth cone collapse. Thus, we have characterized a novel anti-motility compound that has a robust inhibitory effect on neuronal outgrowth and involves signaling through the Rho-Rho kinase collapse pathway. Due to these robust effects, motuporamine C may serve as a valuable tool in further examining the intracellular mechanisms associated with growth cone motility.
机译:神经元生长是神经系统正常发育的基本过程。尽管有最近的进展,控制神经元运动的分子机制仍然知之甚少。为了提供对神经元增生所需的细胞内信号转导机制的了解,我们已经表征了一种化合物的作用,该化合物先前已确定其对转化细胞的抗运动作用。我们表明,该化合物,motuporamine C,以剂量依赖的方式充当小鸡神经突增生的强大抑制剂。此外,在存在motuporamine C的情况下,观察到生长锥塌陷,随后神经突回缩。去除后,生长锥重新延伸片状脂肪和纤毛过程,并重新建立运动力。暴露于motuporamine C的神经元显示出活性Rho-GTP明显上调。此外,使用Rho和Rho相关激酶抑制剂的效应子阻断实验表明,Rho途径在motuporamine C介导的生长锥塌陷中起关键作用。因此,我们已经表征了一种新型的抗运动化合物,该化合物对神经元的生长具有强大的抑制作用,并涉及通过Rho-Rho激酶折叠途径的信号传导。由于这些强大的作用,motuporamine C可以作为进一步检查与生长锥运动相关的细胞内机制的有价值的工具。

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