Wehrlé R, Caroni P, Sotelo C, Dusart I
INSERM U106, Hôpital de la Salpêtrière, 75651 Paris Cedex 13, France.
Eur J Neurosci. 2001 Mar;13(5):857-70. doi: 10.1046/j.1460-9568.2001.01452.x.
To determine whether the competence for axonal sprouting and/or regeneration in the cerebellar system correlates with GAP-43 expression, we have studied GAP-43 mRNA and protein expression in the postlesioned cerebellum and inferior olive. Purkinje cells transiently express GAP-43 during their developmental phase (from E15 to P5 in the rat) which consists of fast axonal growth and the formation of the corticonuclear projection. Adult Purkinje cells, which in control adult rats do not express GAP-43, are extremely resistant to the effects of axotomy but cannot regenerate axons. However, a late and protracted sprouting of axotomized Purkinje cells occurs spontaneously and correlates with a mild expression of GAP-43 mRNA. In contrast, inferior olivary neurons, despite their high constitutive expression of GAP-43, do not sprout but retract their axons and die after axotomy. Furthermore, mature Purkinje cells in cerebellar explants of transgenic mice that overexpress GAP-43 do not regenerate after axotomy, even in the presence of a permissive substrate (cerebellar embryonic tissue) and, contrary to the case in wild-type mice, they do not survive in the in vitro conditions and undergo massive cell death. These results show that the expression of GAP-43 is not only associated with axonal growth, but also with neuronal death.
为了确定小脑系统中轴突发芽和/或再生能力是否与GAP - 43表达相关,我们研究了损伤后小脑和下橄榄核中GAP - 43 mRNA和蛋白的表达。浦肯野细胞在其发育阶段(大鼠为胚胎第15天到出生后第5天)短暂表达GAP - 43,此阶段包括快速轴突生长和皮质核投射的形成。成年对照大鼠的浦肯野细胞不表达GAP - 43,对轴突切断的影响具有极强的抵抗力,但不能再生轴突。然而,轴突切断的浦肯野细胞会自发出现晚期且持久的发芽,这与GAP - 43 mRNA的轻度表达相关。相比之下,下橄榄核神经元尽管GAP - 43组成性高表达,但轴突切断后不发芽,反而缩回轴突并死亡。此外,过表达GAP - 43的转基因小鼠小脑外植体中的成熟浦肯野细胞,即使在存在允许性底物(小脑胚胎组织)的情况下,轴突切断后也不能再生,并且与野生型小鼠的情况相反,它们在体外条件下无法存活并发生大量细胞死亡。这些结果表明,GAP - 43的表达不仅与轴突生长相关,还与神经元死亡相关。