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雄激素和 NGF 通过使 RhoA 失活来介导神经突生长。

Androgens and NGF Mediate the Neurite-Outgrowth through Inactivation of RhoA.

机构信息

Department of Precision Medicine, University of Campania "L.Vanvitelli", 80138 Naples, Italy.

出版信息

Cells. 2023 Jan 19;12(3):373. doi: 10.3390/cells12030373.

Abstract

Steroid hormones and growth factors control neuritogenesis through their cognate receptors under physiological and pathological conditions. We have already shown that nerve growth factor and androgens induce neurite outgrowth of PC12 cells through a reciprocal crosstalk between the NGF receptor, TrkA and the androgen receptor. Here, we report that androgens or NGF induce neuritogenesis in PC12 cells through inactivation of RhoA. Ectopic expression of the dominant negative RhoA N19 promotes, indeed, the neurite-elongation of unchallenged and androgen- or NGF-challenged PC12 cells and the increase in the expression levels of βIII tubulin, a specific neuronal marker. Pharmacological inhibition of the Ser/Thr kinase ROCK, an RhoA effector, induces neuritogenesis in unchallenged PC12 cells, and potentiates the effect of androgens and NGF, confirming the role of RhoA/ROCK axis in the neuritogenesis induced by androgen and NGF, through the phosphorylation of Akt. These findings suggest that therapies based on new selective androgen receptor modulators and/or RhoA/ROCK inhibitors might exert beneficial effects in the treatment of neuro-disorders, neurological diseases and ageing-related processes.

摘要

甾体激素和生长因子通过其在生理和病理条件下的同源受体来控制神经突生成。我们已经表明,神经生长因子和雄激素通过 NGF 受体 TrkA 和雄激素受体之间的相互串扰诱导 PC12 细胞的神经突生长。在这里,我们报告雄激素或 NGF 通过失活 RhoA 诱导 PC12 细胞的神经突生成。显性负性 RhoA N19 的异位表达确实促进了未受挑战的以及雄激素或 NGF 挑战的 PC12 细胞的神经突伸长,并且增加了βIII 微管蛋白的表达水平,βIII 微管蛋白是一种特定的神经元标记物。Ser/Thr 激酶 ROCK 的药理学抑制,一种 RhoA 效应物,诱导未受挑战的 PC12 细胞的神经突生成,并增强雄激素和 NGF 的作用,通过 Akt 的磷酸化证实了 RhoA/ROCK 轴在雄激素和 NGF 诱导的神经突生成中的作用。这些发现表明,基于新型选择性雄激素受体调节剂和/或 RhoA/ROCK 抑制剂的治疗可能在神经紊乱、神经疾病和与年龄相关的过程的治疗中发挥有益作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18fa/9913450/7ba41a4b8553/cells-12-00373-g001.jpg

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