Kumamoto Kanako, Iguchi Tokuichi, Ishida Ryuichi, Uemura Takuya, Sato Makoto, Hirotsune Shinji
Department of Genetic Disease Research, Osaka City University, Graduate School of Medicine, Asahi-machi 1-4-3, Abeno, Osaka 545-8585, Japan.
Department of Anatomy and Neuroscience, Graduate School of Medicine, Osaka University, Osaka 565-0871, Japan.
Biol Open. 2017 Jul 15;6(7):1041-1055. doi: 10.1242/bio.025999.
The robust axonal growth and regenerative capacities of young neurons decrease substantially with age. This developmental downregulation of axonal growth may facilitate axonal pruning and neural circuit formation but limits functional recovery following nerve damage. While external factors influencing axonal growth have been extensively investigated, relatively little is known about the intrinsic molecular changes underlying the age-dependent reduction in regeneration capacity. We report that developmental downregulation of LIS1 is responsible for the decreased axonal extension capacity of mature dorsal root ganglion (DRG) neurons. In contrast, exogenous LIS1 expression or endogenous LIS1 augmentation by calpain inhibition restored axonal extension capacity in mature DRG neurons and facilitated regeneration of the damaged sciatic nerve. The insulator protein CTCF suppressed LIS1 expression in mature DRG neurons, and this reduction resulted in excessive accumulation of phosphoactivated GSK-3β at the axon tip, causing failure of the axonal extension. Conversely, sustained LIS1 expression inhibited developmental axon pruning in the mammillary body. Thus, LIS1 regulation may coordinate the balance between axonal growth and pruning during maturation of neuronal circuits.
年轻神经元强大的轴突生长和再生能力会随着年龄的增长而大幅下降。轴突生长的这种发育性下调可能有助于轴突修剪和神经回路形成,但会限制神经损伤后的功能恢复。虽然影响轴突生长的外部因素已得到广泛研究,但对于再生能力随年龄下降背后的内在分子变化却知之甚少。我们报告称,LIS1的发育性下调是成熟背根神经节(DRG)神经元轴突延伸能力下降的原因。相反,外源性LIS1表达或通过抑制钙蛋白酶增强内源性LIS1可恢复成熟DRG神经元的轴突延伸能力,并促进受损坐骨神经的再生。绝缘子蛋白CTCF抑制成熟DRG神经元中LIS1的表达,这种减少导致轴突末端磷酸化激活的GSK-3β过度积累,从而导致轴突延伸失败。相反,持续的LIS1表达会抑制乳头体中的发育性轴突修剪。因此,LIS1调控可能在神经元回路成熟过程中协调轴突生长和修剪之间的平衡。