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GFRalpha1的可溶性形式和结合形式在初级感觉神经元中引发不同的不依赖胶质细胞源性神经营养因子的神经突生长反应。

Soluble and bound forms of GFRalpha1 elicit different GDNF-independent neurite growth responses in primary sensory neurons.

作者信息

Mikaels-Edman Asa, Baudet Christel, Ernfors Patrik

机构信息

Laboratory of Molecular Neurobiology, MBB, Karolinska Institute, Stockholm, Sweden.

出版信息

Dev Dyn. 2003 May;227(1):27-34. doi: 10.1002/dvdy.10280.

Abstract

We have investigated the role of glial cell-line derived neurotrophic factor (GDNF) and the effect of soluble or immobilized localization of its GDNF family receptor alpha1 (GFRalpha1) on neurite growth in cultured embryonic Bax(-/-) dorsal root ganglion neurons, which survive in the absence of trophic support. Whereas GDNF alone has a moderate effect on neurite growth, soluble and immobilized GFRalpha1 elicit opposing and GDNF-independent effects on neurite growth by a phospholipase C (PLC) gamma-dependent mechanism. Thus, GFRalpha1 elicits nerve growth responses independent of GDNF. However, GDNF in the presence of soluble or immobilized GFRalpha1 reverse the GDNF-independent GFRalpha1 modulation of neurite growth. The different outcome of soluble and bound GFRalpha1 combined with our previous immunohistochemical data showing GFRalpha1-protein in Schwann cells but not axons suggest terminal Schwann cells as a source of locally administered target-derived GFRalpha1 and place this receptor in the path of axonal growth and guidance. Thus, target-derived GFRalpha1 play opposing roles when presented alone and with GDNF and, therefore, can function as a nerve growth cue that both can promote and prevent growth in the developing peripheral nervous system.

摘要

我们已经研究了胶质细胞源性神经营养因子(GDNF)的作用,以及其GDNF家族受体α1(GFRα1)的可溶性或固定化定位对培养的胚胎Bax(-/-)背根神经节神经元神经突生长的影响,这些神经元在没有营养支持的情况下仍能存活。单独的GDNF对神经突生长有适度的影响,而可溶性和固定化的GFRα1通过磷脂酶C(PLC)γ依赖性机制对神经突生长产生相反的、不依赖GDNF的影响。因此,GFRα1引发的神经生长反应不依赖于GDNF。然而,在可溶性或固定化GFRα1存在的情况下,GDNF会逆转GFRα1对神经突生长的不依赖GDNF的调节。可溶性和结合型GFRα1的不同结果,以及我们之前的免疫组织化学数据显示施万细胞中有GFRα1蛋白而轴突中没有,表明终末施万细胞是局部施用的靶源性GFRα1的来源,并将该受体置于轴突生长和导向的路径中。因此,靶源性GFRα1在单独存在和与GDNF一起存在时发挥相反的作用,因此可以作为一种神经生长信号,既能促进又能阻止发育中的周围神经系统的生长。

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