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Sensory defects in Necdin deficient mice result from a loss of sensory neurons correlated within an increase of developmental programmed cell death

机译:Necdin缺陷小鼠的感觉缺陷是由于发育性程序性细胞死亡增加而引起的感觉神经元丢失所致

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Background The human NECDIN gene is involved in a neurodevelopmental disorder, Prader-Willi syndrome (PWS). Previously we reported a mouse Necdin knock-out model with similar defects to PWS patients. Despite the putative roles attributed to Necdin, mainly from in vitro studies, its in vivo function remains unclear. In this study, we investigate sensory-motor behaviour in Necdin deficient mice. We reveal cellular defects and analyse their cause. Results We report sensory differences in Necdin deficient mice compared to wild type animals. These differences led us to investigate sensory neuron development in Necdin deficient mouse embryos. First, we describe the expression pattern of Necdin in developing DRGs and report a reduction of one-third in specified sensory neurons in dorsal roots ganglia and show that this neuronal loss is achieved by E13.5, when DRGs sensory neurons are specified. In parallel, we observed an increase of 41% in neuronal apoptosis during the wave of naturally occurring cell death at E12.5. Since it is assumed that Necdin is a P75NTR interactor, we looked at the P75NTR-expressing cell population in Necdin knock-out embryos. Unexpectedly, Necdin loss of function has no effect on p75NTR expressing neurons suggesting no direct genetic interaction between Necdin and P75NTR in this context. Although we exclude a role of Necdin in axonal outgrowth from spinal sensory neurons in early developmental stages; such a role could occur later in neuronal differentiation. Finally we also exclude an anti-proliferative role of Necdin in developing sensory neurons. Conclusion Overall, our data show clearly that, in early development of the nervous system, Necdin is an anti-apoptotic or survival factor.
机译:背景技术人类NECDIN基因与神经发育障碍普拉德-威利综合症(PWS)有关。先前,我们报道了一种小鼠Necdin基因敲除模型,其缺陷与PWS患者相似。尽管归因于Necdin的推定作用主要来自体外研究,但其体内功能仍不清楚。在这项研究中,我们调查Necdin缺陷小鼠的感觉运动行为。我们揭示细胞缺陷并分析其原因。结果我们报道了与野生型动物相比,缺乏Necdin的小鼠的感觉差异。这些差异使我们研究了Necdin缺陷小鼠胚胎中的感觉神经元发育。首先,我们描述了Necdin在发育中的DRGs中的表达模式,并报告了背根神经节中指定的感觉神经元减少了三分之一,并表明当指定DRGs感觉神经元时,这种神经元损失是通过E13.5实现的。同时,我们观察到在E12.5自然发生的细胞死亡浪潮中,神经元凋亡增加了41%。由于假定Necdin是P75NTR相互作用子,我们研究了Necdin基因敲除胚胎中表达P75NTR的细胞群。出乎意料的是,Necdin功能丧失对表达p75NTR的神经元没有影响,表明在这种情况下Necdin与P75NTR之间没有直接的遗传相互作用。尽管我们排除了神经胶蛋白在发育早期从脊髓感觉神经元的轴突生长中的作用。这种作用可能会在以后的神经元分化中发生。最后,我们还排除了Necdin在发展感觉神经元中的抗增殖作用。结论总的来说,我们的数据清楚地表明,在神经系统的早期发育中,Necdin是一种抗凋亡或存活因子。

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