首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Role of Class III phosphoinositide 3-kinase in the brain development: possible involvement in specific learning disorders
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Role of Class III phosphoinositide 3-kinase in the brain development: possible involvement in specific learning disorders

机译:III级磷酸亚膦酰胺酶在大脑发展中的作用:可能参与特定的学习障碍

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摘要

Class III phosphoinositide 3-kinase (PIK3C3 or mammalian vacuolar protein sorting 34 homolog, Vps34) regulates vesicular trafficking, autophagy, and nutrient sensing. Recently, we reported that PIK3C3 is expressed in mouse cerebral cortex throughout the developmental process, especially at early embryonic stage. We thus examined the role of PIK3C3 in the development of the mouse cerebral cortex. Acute silencing of PIK3C3 with in utero electroporation method caused positional defects of excitatory neurons during corticogenesis. Time-lapse imaging revealed that the abnormal positioning was at least partially because of the reduced migration velocity. When PIK3C3 was silenced in cortical neurons in one hemisphere, axon extension to the contralateral hemisphere was also delayed. These aberrant phenotypes were rescued by RNAiresistant PIK3C3. Notably, knockdown of PIK3C3 did not affect the cell cycle of neuronal progenitors and stem cells at the ventricular zone. Taken together, PIK3C3 was thought to play a crucial role in corticogenesis through the regulation of excitatory neuron migration and axon extension. Meanwhile, when we performed comparative genomic hybridization on a patient with specific learning disorders, a 107 Kb-deletion was identified on 18q12.3 (nt. 39554147-39661206) that encompasses exons 5-23 of PIK3C3. Notably, the above aberrant migration and axon growth phenotypes were not rescued by the disease-related truncation mutant (172 amino acids) lacking the C-terminal kinase domain. Thus, functional defects of PIK3C3 might impair corticogenesis and relate to the pathophysiology of specific learning disorders and other neurodevelopmental disorders.
机译:III级磷酸阳性3-激酶(PIK3C3或哺乳动物真空蛋白分选34同源物,VPS34)调节囊泡贩运,自噬和营养感测。最近,我们报道了Pik3C3在整个发育过程中以小鼠脑皮质表达,特别是在早期胚胎阶段。因此,我们检查了PIK3C3在小鼠脑皮层的发展中的作用。 PIK3C3与子宫电穿孔法的急性沉默导致皮质发生过程中兴奋神经元的位置缺陷。延时成像显示,由于迁移速度降低,异常定位至少部分地部分。当PIK3C3在一个半球中的皮质神经元中沉默时,对侧半球的轴突延伸也延迟。这些异常表型被Rnairesistant pik3c3救出。值得注意的是,PIK3C3的敲低不影响心室区域的神经元祖细胞和干细胞的细胞周期。携带在一起,Pik3C3被认为通过调节兴奋神经元迁移和轴突延伸来发挥皮质化作用至关重要的作用。同时,当我们对具有特异性学习疾病的患者进行比较基因组杂交时,在18℃(NT.39554147-3961206)上鉴定了107kb缺失,其包括PIK3C3的外显子5-23。值得注意的是,上述异常迁移和轴突生长表型未被缺乏C末端激酶结构域的疾病相关截断突变体(172个氨基酸)救出。因此,PIK3C3的功能缺陷可能损害皮质发生,并且涉及特定学习障碍和其他神经发育障碍的病理生理学。

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