Fame Ryann M, Lehtinen Maria K
Department of Pathology, Boston Children's Hospital, Boston, MA, United States.
Front Cell Dev Biol. 2021 Nov 23;9:780207. doi: 10.3389/fcell.2021.780207. eCollection 2021.
Function of the mature central nervous system (CNS) requires a substantial proportion of the body's energy consumption. During development, the CNS anlage must maintain its structure and perform stage-specific functions as it proceeds through discrete developmental stages. While key extrinsic signals and internal transcriptional controls over these processes are well appreciated, metabolic and mitochondrial states are also critical to appropriate forebrain development. Specifically, metabolic state, mitochondrial function, and mitochondrial dynamics/localization play critical roles in neurulation and CNS progenitor specification, progenitor proliferation and survival, neurogenesis, neural migration, and neurite outgrowth and synaptogenesis. With the goal of integrating neurodevelopmental biologists and mitochondrial specialists, this review synthesizes data from disparate models and processes to compile and highlight key roles of mitochondria in the early development of the CNS with specific focus on forebrain development and corticogenesis.
成熟中枢神经系统(CNS)的功能需要消耗身体相当比例的能量。在发育过程中,CNS原基在经历不同发育阶段时必须维持其结构并执行特定阶段的功能。虽然人们已经充分认识到这些过程中的关键外在信号和内部转录调控,但代谢和线粒体状态对于前脑的正常发育也至关重要。具体而言,代谢状态、线粒体功能以及线粒体动力学/定位在神经胚形成和CNS祖细胞特化、祖细胞增殖与存活、神经发生、神经迁移以及神经突生长和突触形成中发挥着关键作用。为了整合神经发育生物学家和线粒体专家的研究,本综述综合了来自不同模型和过程的数据,以汇编并突出线粒体在CNS早期发育中的关键作用,特别关注前脑发育和皮质发生。