Miyazaki Taisuke, Fukaya Masahiro, Shimizu Hidemi, Watanabe Masahiko
Department of Anatomy, Hokkaido University School of Medicine, Sapporo 060-8638, Japan.
Eur J Neurosci. 2003 Jun;17(12):2563-72. doi: 10.1046/j.1460-9568.2003.02698.x.
Two subtypes of the vesicular glutamate transporter are expressed differentially in two excitatory afferents synapsing on to Purkinje cells: VGluT1 (BNPI) in axon terminals of cerebellar granule cells (i.e. parallel fibres; PFs) and VGluT2 (DNPI) in those of the inferior olivary neurons (climbing fibres; CFs). In the present study, we examined their expression in the developing mouse cerebellum. By in situ hybridization, the inferior olivary nucleus selectively expressed VGluT2 mRNA through postnatal life. In the cerebellum, both subtypes were transcribed in the external and internal granular layers during the first postnatal week. Thereafter, VGluT1 mRNA showed marked upregulation in the internal granular layer, whereas VGluT2 mRNA disappeared from the external and internal granular layers by the end of the third postnatal week. By immunohistochemistry, CF terminals consistently exhibited VGluT2 immunoreactivity in the postnatal cerebellum. By contrast, in the first 10 days of postnatal life, VGluT2 predominated in PF terminals, despite the transcription of both transporters in developing granule cells. During the second 10 days, VGluT2 in PF terminals was replaced with VGluT1 from deep regions of the molecular layer upwards, correlating with dendritic translocation of CFs. This replacement was accomplished by postnatal day 30. Taking that late-borne PFs are laid down successively on earlier ones in the molecular layer, the deep-to-superficial replacement represents maturation-linked switching from VGluT2 to VGluT1 in individual PFs, and is likely to be regulated at both the transcription and translation levels.
小脑颗粒细胞(即平行纤维;PFs)的轴突终末中表达VGlut1(BNPI),下橄榄核神经元(攀缘纤维;CFs)的轴突终末中表达VGlut2(DNPI)。在本研究中,我们检测了它们在发育中小鼠小脑中的表达。通过原位杂交,下橄榄核在出生后的整个生命过程中选择性地表达VGlut2 mRNA。在小脑中,出生后的第一周内,两种亚型均在外部和内部颗粒层中转录。此后,VGlut1 mRNA在内部颗粒层中显著上调,而VGlut2 mRNA在出生后第三周结束时从外部和内部颗粒层中消失。通过免疫组织化学,CF终末在出生后的小脑中始终表现出VGlut2免疫反应性。相比之下,在出生后的前10天,尽管两种转运体在发育中的颗粒细胞中均有转录,但VGlut2在PF终末中占主导地位。在第二个10天期间,PF终末中的VGlut2从分子层的深部区域向上逐渐被VGlut1取代,这与CF的树突移位相关。这种取代在出生后第30天完成。考虑到在分子层中,较晚形成的PFs依次排列在较早形成的PFs之上,从深部到浅部的取代代表了单个PFs中与成熟相关的从VGlut2到VGlut1的转换,并且可能在转录和翻译水平上受到调控。