Andrieu David, Watrin Françoise, Niinobe Michio, Yoshikawa Kazuaki, Muscatelli Françoise, Fernandez Pierre Alain
Neurogenèse et Morphogenèse dans le Développement et chez l'Adulte, CNRS UMR 6156, Institut de Biologie du Développement de Marseille (IBDM), Case 907, Campus de Luminy, 13288 Cedex 9, Marseille, France.
Gene Expr Patterns. 2003 Dec;3(6):761-5. doi: 10.1016/s1567-133x(03)00138-8.
The expression pattern of Necdin, a gene involved in the etiology of Prader-Willi syndrome and a member of the MAGE family of genes, is described during mouse nervous system development. Using RNA in situ hybridization, immunohistochemical staining, and colocalization with neuronal differentiation markers, we found that Necdin RNA and protein are expressed within post-mitotic neurons at all stages studied. From E10 to E12, Necdin is detected in all developing neurons, in both central and peripheral nervous system, with the highest expression levels in the diencephalon and the hindbrain. After E13, Necdin is expressed in specific structures of the nervous system, in particular the hypothalamus, the thalamus, and the pons, suggesting a specific developmental role therein. In addition, Necdin expression is also detected in non-neural tissues, such as the somites, the developing limb buds, the first branchial arches, the tong, and the axial muscles. Recently, Necdin and other MAGE proteins were found to interact in vitro with the intracellular domain of the p75NTR neurotrophin receptor, but this interaction has not been validated in vivo. We report here that the spatial and temporal expression of p75NTR is included in Necdin expression domain. These results are in agreement with Necdin proposed role on cell cycle arrest, inhibition of apoptosis and facilitation of neuronal differentiation in vitro, and with hypothalamic cellular deficiencies reported in mice with abrogation of the Necdin gene. Furthermore, they are also consistent with the putative role of Necdin in signaling events promoted by p75NTR during mouse nervous system development.
Necdin是一种与普拉德-威利综合征病因相关的基因,属于MAGE基因家族成员,本文描述了其在小鼠神经系统发育过程中的表达模式。通过RNA原位杂交、免疫组织化学染色以及与神经元分化标志物的共定位研究,我们发现,在所研究的各个阶段,有丝分裂后的神经元中均表达Necdin RNA和蛋白。在胚胎第10天到12天,中枢和外周神经系统所有正在发育的神经元中均可检测到Necdin,其中间脑和后脑的表达水平最高。胚胎第13天之后,Necdin在神经系统的特定结构中表达,特别是下丘脑、丘脑和脑桥,提示其在这些结构中具有特定的发育作用。此外,在非神经组织中也可检测到Necdin的表达,如体节、正在发育的肢芽、第一鳃弓、舌头和轴肌。最近发现,Necdin和其他MAGE蛋白在体外可与p75NTR神经营养因子受体的胞内结构域相互作用,但这种相互作用尚未在体内得到验证。我们在此报告,p75NTR的时空表达包含在Necdin的表达域内。这些结果与Necdin在体外对细胞周期停滞、抑制细胞凋亡及促进神经元分化所起的作用相符,也与Necdin基因缺失小鼠中报道的下丘脑细胞缺陷相符。此外,这些结果还与Necdin在小鼠神经系统发育过程中由p75NTR介导的信号转导事件中的假定作用一致。