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甘丙肽通过抑制 Cdc42 和 Rho GTP 酶以及激活丝切蛋白来刺激感觉神经元的轴突生长。

Galanin stimulates neurite outgrowth from sensory neurons by inhibition of Cdc42 and Rho GTPases and activation of cofilin.

机构信息

Schools of Physiology and Pharmacology and Clinical Sciences, University of Bristol, Bristol, UK.

出版信息

J Neurochem. 2013 Oct;127(2):199-208. doi: 10.1111/jnc.12379. Epub 2013 Aug 22.

Abstract

We and others have previously shown that the neuropeptide galanin modulates neurite outgrowth from adult sensory neurons via activation of the second galanin receptor; however, the intracellular signalling pathways that mediate this neuritogenic effect have yet to be elucidated. Here, we demonstrate that galanin decreases the activation state in adult sensory neurons and PC12 cells of Rho and Cdc42 GTPases, both known regulators of filopodial and growth cone motility. Consistent with this, activated levels of Rho and Cdc42 levels are increased in the dorsal root ganglion of adult galanin knockout animals compared with wildtype controls. Furthermore, galanin markedly increases the activation state of cofilin, a downstream effector of many of the small GTPases, in the cell bodies and growth cones of sensory neurons and in PC12 cells. We also demonstrate a reduction in the activation of cofilin, and alteration in growth cone motility, in cultured galanin knockout neurons compared with wildtype controls. These data provide the first evidence that galanin regulates the Rho family of GTPases and cofilin to stimulate growth cone dynamics and neurite outgrowth in sensory neurons. These findings have important therapeutic implications for the treatment of peripheral sensory neuropathies.

摘要

我们和其他人之前已经表明,神经肽甘丙肽通过激活第二甘丙肽受体来调节成年感觉神经元的轴突生长;然而,介导这种促神经元发生效应的细胞内信号通路尚未阐明。在这里,我们证明甘丙肽降低了成年感觉神经元和 PC12 细胞中 Rho 和 Cdc42 GTPases 的激活状态,这两种 GTPases都是丝状伪足和生长锥运动的已知调节剂。与此一致的是,与野生型对照相比,成年甘丙肽敲除动物的背根神经节中 Rho 和 Cdc42 水平的激活水平增加。此外,甘丙肽显著增加了感觉神经元的胞体和生长锥以及 PC12 细胞中许多小 GTPases下游效应物丝切蛋白的激活状态。我们还证明,与野生型对照相比,培养的甘丙肽敲除神经元中的丝切蛋白的激活减少,并且生长锥运动发生改变。这些数据首次提供了证据,证明甘丙肽调节 Rho 家族 GTPases 和丝切蛋白来刺激感觉神经元中的生长锥动力学和轴突生长。这些发现对于治疗周围感觉神经病变具有重要的治疗意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/611c/3935412/1e3e6549dc07/jnc0127-0199-f1.jpg

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