Jansen Pernille, Giehl Klaus, Nyengaard Jens R, Teng Kenneth, Lioubinski Oleg, Sjoegaard Susanne S, Breiderhoff Tilman, Gotthardt Michael, Lin Fuyu, Eilers Andreas, Petersen Claus M, Lewin Gary R, Hempstead Barbara L, Willnow Thomas E, Nykjaer Anders
MIND Center, Department of Medical Biochemistry, Ole Worms Allé 1170, Aarhus University, DK-8000 Aarhus C, Denmark.
Nat Neurosci. 2007 Nov;10(11):1449-57. doi: 10.1038/nn2000. Epub 2007 Oct 14.
Neurotrophins are essential for development and maintenance of the vertebrate nervous system. Paradoxically, although mature neurotrophins promote neuronal survival by binding to tropomyosin receptor kinases and p75 neurotrophin receptor (p75(NTR)), pro-neurotrophins induce apoptosis in cultured neurons by engaging sortilin and p75(NTR) in a death-signaling receptor complex. Substantial amounts of neurotrophins are secreted in pro-form in vivo, yet their physiological significance remains unclear. We generated a sortilin-deficient mouse to examine the contribution of the p75(NTR)/sortilin receptor complex to neuronal viability. In the developing retina, Sortilin 1 (Sort1)(-/-) mice showed reduced neuronal apoptosis that was indistinguishable from that observed in p75(NTR)-deficient (Ngfr(-/-)) mice. To our surprise, although sortilin deficiency did not affect developmentally regulated apoptosis of sympathetic neurons, it did prevent their age-dependent degeneration. Furthermore, in an injury protocol, lesioned corticospinal neurons in Sort1(-/-) mice were protected from death. Thus, the sortilin pathway has distinct roles in pro-neurotrophin-induced apoptotic signaling in pathological conditions, but also in specific stages of neuronal development and aging.
神经营养因子对于脊椎动物神经系统的发育和维持至关重要。矛盾的是,尽管成熟的神经营养因子通过与原肌球蛋白受体激酶和p75神经营养因子受体(p75(NTR))结合来促进神经元存活,但前体神经营养因子通过在死亡信号受体复合物中与sortilin和p75(NTR)结合,在培养的神经元中诱导凋亡。大量的神经营养因子在体内以前体形式分泌,但其生理意义仍不清楚。我们生成了一种sortilin缺陷小鼠,以研究p75(NTR)/sortilin受体复合物对神经元活力的作用。在发育中的视网膜中,Sortilin 1(Sort1)(-/-)小鼠的神经元凋亡减少,这与在p75(NTR)缺陷(Ngfr(-/-))小鼠中观察到的情况没有区别。令我们惊讶的是,尽管sortilin缺陷并不影响交感神经元发育调控的凋亡,但它确实能防止它们随年龄增长而退化。此外,在一个损伤实验中,Sort1(-/-)小鼠中受损的皮质脊髓神经元免受死亡。因此,sortilin途径在病理条件下前体神经营养因子诱导的凋亡信号传导中具有独特作用,而且在神经元发育和衰老的特定阶段也有作用。