Department of Life Science, Ewha Womans University, Seoul, 03760, Republic of Korea.
Ewha Research Center for Systems Biology, Ewha Womans University, Seoul, 03760, Republic of Korea.
Sci Rep. 2017 Jun 6;7(1):2826. doi: 10.1038/s41598-017-02842-6.
Hyperactivated mTOR signaling in the developing brain has been implicated in multiple forms of pathology including tuberous sclerosis complex (TSC). To date, various phenotypic defects such as cortical lamination irregularity, subependymal nodule formation, dysmorphic astrocyte differentiation and dendritic malformation have been described for patients and animal models. However, downstream networks affected in the developing brain by hyperactivated mTOR signaling have yet to be characterized. Here, we present an integrated analysis of transcriptomes and proteomes generated from wild-type and Tsc1/Emx1-Cre forebrains. This led to comprehensive lists of genes and proteins whose expression levels were altered by hyperactivated mTOR signaling. Further incorporation of TSC patient data followed by functional enrichment and network analyses pointed to changes in molecular components and cellular processes associated with neuronal differentiation and morphogenesis as the key downstream events underlying developmental and morphological defects in TSC. Our results provide novel and fundamental molecular bases for understanding hyperactivated mTOR signaling-induced brain defects which can in turn facilitate identification of potential diagnostic markers and therapeutic targets for mTOR signaling-related neurological disorders.
发育中的大脑中过度活跃的 mTOR 信号已被牵涉到多种病理形式中,包括结节性硬化症复合体(TSC)。迄今为止,已经为患者和动物模型描述了各种表型缺陷,如皮质分层不规则、室管膜下结节形成、形态异常的星形胶质细胞分化和树突畸形。然而,发育中的大脑中由过度活跃的 mTOR 信号影响的下游网络尚未被表征。在这里,我们展示了从野生型和 Tsc1/Emx1-Cre 前脑中生成的转录组和蛋白质组的综合分析。这导致了大量基因和蛋白质的表达水平被过度活跃的 mTOR 信号改变的综合列表。进一步纳入 TSC 患者数据,随后进行功能富集和网络分析,指出与神经元分化和形态发生相关的分子成分和细胞过程的变化是 TSC 中发育和形态缺陷的关键下游事件。我们的结果为理解过度活跃的 mTOR 信号诱导的脑缺陷提供了新的和基本的分子基础,这反过来又有助于确定与 mTOR 信号相关的神经障碍的潜在诊断标志物和治疗靶点。