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Transient inhibition of the ERK pathway prevents cerebellar developmental defects and improves long-term motor functions in murine models of neurofibromatosis type 1

机译:短暂抑制ERK通路可防止小脑发育缺陷并改善1型神经纤维瘤病鼠模型的长期运动功能

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摘要

Individuals with neurofibromatosis type 1 (NF1) frequently exhibit cognitive and motor impairments and characteristics of autism. The cerebellum plays a critical role in motor control, cognition, and social interaction, suggesting that cerebellar defects likely contribute to NF1-associated neurodevelopmental disorders. Here we show that Nf1 inactivation during early, but not late stages of cerebellar development, disrupts neuronal lamination, which is partially caused by overproduction of glia and subsequent disruption of the Bergmann glia (BG) scaffold. Specific Nf1 inactivation in glutamatergic neuronal precursors causes premature differentiation of granule cell (GC) precursors and ectopic production of unipolar brush cells (UBCs), indirectly disrupting neuronal migration. Transient MEK inhibition during a neonatal window prevents cerebellar developmental defects and improves long-term motor performance of Nf1-deficient mice. This study reveals essential roles of Nf1 in GC/UBC migration by generating correct numbers of glia and controlling GC/UBC fate-specification/differentiation, identifying a therapeutic prevention strategy for multiple NF1-associcated developmental abnormalities.>DOI:
机译:1型神经纤维瘤病(NF1)的个体经常表现出认知和运动障碍以及自闭症特征。小脑在运动控制,认知和社交互动中起着至关重要的作用,提示小脑缺陷可能与NF1相关的神经发育障碍有关。在这里,我们显示Nf1灭活在小脑发育的早期但不是晚期,会破坏神经元的层压,这部分是由神经胶质的过度产生和随后对Bergmann神经胶质(BG)支架的破坏引起的。谷氨酸能神经元前体中的特定Nf1失活会导致颗粒细胞(GC)前体的过早分化和单极刷细胞(UBC)的异位产生,从而间接破坏神经元迁移。新生儿窗口期间的瞬态MEK抑制可防止小脑发育缺陷并改善Nf1缺陷小鼠的长期运动能力。这项研究揭示了Nf1在GC / UBC迁移中的重要作用,方法是生成正确数量的神经胶质并控制GC / UBC的命运特异性/分化,确定多种NF1相关的发育异常的治疗预防策略。> DOI:

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