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Neurons and neuronal activity control gene expression in astrocytes to regulate their development and metabolism

机译:神经元和神经元活性控制星形胶质细胞中的基因表达,以调节其发育和代谢

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The influence that neurons exert on astrocytic function is poorly understood. To investigate this, we first developed a system combining cortical neurons and astrocytes from closely related species, followed by RNA-seq and in silico species separation. This approach uncovers a wide programme of neuron-induced astrocytic gene expression, involving Notch signalling, which drives and maintains astrocytic maturity and neurotransmitter uptake function, is conserved in human development, and is disrupted by neurodegeneration. Separately, hundreds of astrocytic genes are acutely regulated by synaptic activity via mechanisms involving cAMP/PKA-dependent CREB activation. This includes the coordinated activity-dependent upregulation of major astrocytic components of the astrocyte–neuron lactate shuttle, leading to a CREB-dependent increase in astrocytic glucose metabolism and elevated lactate export. Moreover, the groups of astrocytic genes induced by neurons or neuronal activity both show age-dependent decline in humans. Thus, neurons and neuronal activity regulate the astrocytic transcriptome with the potential to shape astrocyte–neuron metabolic cooperation.
机译:人们对神经元对星形细胞功能的影响知之甚少。为了对此进行研究,我们首先开发了一个系统,该系统结合了来自密切相关物种的皮质神经元和星形胶质细胞,然后进行RNA序列和计算机硅物种分离。这种方法揭示了神经元诱导的星形细胞基因表达的广泛程序,涉及Notch信号传导,Notch信号驱动并维持星形细胞的成熟和神经递质摄取功能,在人类发育中是保守的,并被神经变性所破坏。另外,数百种星形细胞基因通过涉及cAMP / PKA依赖性CREB激活的机制通过突触活动而受到急性调控。这包括星形胶质细胞-神经元乳酸穿梭的主要星形细胞成分的活性依赖性上调,导致星形胶质糖代谢的CREB依赖性增加和乳酸出口增加。此外,神经元或神经元活动诱导的星形细胞基因组在人类中均显示出年龄依赖性的衰退。因此,神经元和神经元活动调节星形胶质细胞转录组,并可能影响星形胶质细胞-神经元的新陈代谢合作。

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