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CD40L 反向信号抑制椎前交感神经轴突生长和组织神经支配。

CD40L reverse signaling suppresses prevertebral sympathetic axon growth and tissue innervation.

机构信息

School of Biosciences, Cardiff University, Cardiff, UK.

出版信息

Dev Neurobiol. 2019 Nov;79(11-12):949-962. doi: 10.1002/dneu.22735. Epub 2020 Feb 29.

Abstract

CD40-activated CD40L reverse signaling is a major physiological regulator of the growth of neural processes in the developing nervous system. Previous work on superior cervical ganglion (SCG) neurons of the paravertebral sympathetic chain has shown that CD40L reverse signaling enhances NGF-promoted axon growth and tissue innervation. Here we show that CD40L reverse signaling has the opposite function in prevertebral ganglion (PVG) sympathetic neurons. During a circumscribed perinatal window of development, PVG neurons cultured from Cd40 mice had substantially larger, more exuberant axon arbors in the presence of NGF than PVG neurons cultured from wild-type mice. Tissues that receive their sympathetic innervation from PVG neurons were markedly hyperinnervated in Cd40 mice compared with wild-type mice. The exuberant axonal growth phenotype of cultured CD40-deficient perinatal PVG neurons was pared back to wild-type levels by activating CD40L reverse signaling with a CD40-Fc chimeric protein, but not by activating CD40 forward signaling with CD40L. The co-expression of CD40 and CD40L in PVG neurons suggests that these proteins engage in an autocrine signaling loop in these neurons. Our work shows that CD40L reverse signaling is a physiological regulator of NGF-promoted sympathetic axon growth and tissue innervation with opposite effects in paravertebral and prevertebral neurons.

摘要

CD40 激活的 CD40L 反向信号是发育中神经系统中神经突起生长的主要生理调节因子。先前关于脊柱旁交感神经链的颈上交感神经节 (SCG) 神经元的研究表明,CD40L 反向信号增强了 NGF 促进的轴突生长和组织支配。在这里,我们显示 CD40L 反向信号在节前交感神经节 (PVG) 神经元中具有相反的功能。在发育过程中一个特定的围产期窗口期间,与从野生型小鼠培养的 PVG 神经元相比,来自 Cd40 小鼠的 PVG 神经元在 NGF 存在的情况下具有更大、更旺盛的轴突树突。与野生型小鼠相比,来自 Cd40 小鼠的接受其交感神经支配的组织明显过度支配。用 CD40-Fc 嵌合蛋白激活 CD40L 反向信号可将培养的 CD40 缺陷型围产期 PVG 神经元的过度轴突生长表型恢复到野生型水平,但用 CD40L 激活 CD40 正向信号则不能。CD40 和 CD40L 在 PVG 神经元中的共表达表明这些蛋白在这些神经元中参与了自分泌信号环路。我们的工作表明,CD40L 反向信号是 NGF 促进的交感神经轴突生长和组织支配的生理调节剂,在脊柱旁和节前神经元中具有相反的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f52f/7187455/0457c07be09e/DNEU-79-949-g001.jpg

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