Giavazzi Alessio, Setola Veronica, Simonati Alessandro, Battaglia Giorgio
Molecular Neuroanatomy Lab, Department of Neurophysiology, Neurological Institute C. Besta, Milano, Italy.
J Neuropathol Exp Neurol. 2006 Mar;65(3):267-77. doi: 10.1097/01.jnen.0000205144.54457.a3.
Despite recent data on the cellular function of the survival motor neuron (SMN) gene, the spinal muscular atrophy (SMA) disease gene, the role of the SMN protein in motor neurons and hence in the pathogenesis of SMA is still unclear. The spatial and temporal expression of SMN in neurons, particularly during development, could help in verifying the hypotheses on the SMN protein functions so far proposed. We have therefore investigated the expression and subcellular localization of the SMN protein in the human central nervous system (CNS) during ontogenesis with immunocytochemical, confocal immunofluorescence, and Western blot experiments using a panel of anti-SMN antibodies recognizing the full-length SMN protein. The experiments not only revealed the early SMN expression in all neurons, but also demonstrated the progressive shift in SMN subcellular localization from mainly nuclear to cytoplasmic and then to axons during CNS maturation. This finding was present in selected neuronal cell populations and it was particularly conspicuous in motor neurons. Our data support the idea of a specific role for SMN in axons, which becomes predominant in the ontogenetic period encompassing axonogenesis and axonal sprouting. In addition, the asymmetric SMN staining demonstrated in the germinative neuroepithelium suggests a possible role for SMN in neuronal migration and/or differentiation.
尽管最近有关于存活运动神经元(SMN)基因(即脊髓性肌萎缩症(SMA)疾病基因)细胞功能的数据,但SMN蛋白在运动神经元以及SMA发病机制中的作用仍不清楚。SMN在神经元中的时空表达,尤其是在发育过程中的表达,可能有助于验证目前提出的关于SMN蛋白功能的假说。因此,我们使用一组识别全长SMN蛋白的抗SMN抗体,通过免疫细胞化学、共聚焦免疫荧光和蛋白质印迹实验,研究了人中枢神经系统(CNS)在个体发生过程中SMN蛋白的表达和亚细胞定位。实验不仅揭示了SMN在所有神经元中的早期表达,还表明在CNS成熟过程中,SMN亚细胞定位从主要位于细胞核逐渐转移到细胞质,然后再到轴突。这一发现存在于选定的神经元细胞群体中,在运动神经元中尤为明显。我们的数据支持了SMN在轴突中具有特定作用的观点,这种作用在包括轴突形成和轴突发芽的个体发生期变得占主导地位。此外,在生发神经上皮中显示的不对称SMN染色表明,SMN在神经元迁移和/或分化中可能发挥作用。