首页> 美国卫生研究院文献>The Journal of Neuroscience >Posttraumatic GABAA-Mediated Ca2+i Increase Is Essential for the Induction of Brain-Derived Neurotrophic Factor-Dependent Survival of Mature Central Neurons
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Posttraumatic GABAA-Mediated Ca2+i Increase Is Essential for the Induction of Brain-Derived Neurotrophic Factor-Dependent Survival of Mature Central Neurons

机译:创伤后GABAA介导的Ca2 + i的增加对于诱导脑源性神经营养因子依赖的成熟中枢神经元的存活至关重要。

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摘要

A shift of GABAA-mediated responses from hyperpolarizing to depolarizing after neuronal injury leads to GABAA-mediated increase in [Ca2+]i. In addition, central neurons become dependent on BDNF for survival. Whether these two mechanisms are causally interrelated is an open question. Here, we show in lesioned CA3 hippocampal neurons in vitro and in axotomized corticospinal neurons in vivo that posttraumatic downregulation of the neuron-specific K–Cl cotransporter KCC2 leads to intracellular chloride accumulation by the Na–K–2Cl cotransporter NKCC1, resulting in GABA-induced [Ca2+]i transients. This mechanism is required by a population of neurons to survive in a BDNF-dependent manner after injury, because blocking GABAA-depolarization with the NKCC1 inhibitor bumetanide prevents the loss of neurons on BDNF withdrawal. The resurgence of KCC2 expression during recovery coincides with loss of BDNF dependency for survival. This is likely mediated through BDNF itself, because injured neurons reverse their response to this neurotrophin by switching the BDNF-induced downregulation of KCC2 to upregulation.
机译:神经元损伤后,GABAA介导的反应从超极化转变为去极化,导致GABAA介导的[Ca 2 + ] i增加。此外,中枢神经元的生存依赖于BDNF。这两种机制是否因果相关是一个悬而未决的问题。在这里,我们在体外病变的CA3海马神经元和体内切开的皮质脊髓神经元中显示,创伤后神经元特异性K–Cl协同转运蛋白KCC2的下调导致Na–K–2Cl协同转运蛋白NKCC1导致细胞内氯积累,从而导致GABA-诱导[Ca 2 + ] i瞬变。伤害后,神经元群体需要这种机制以BDNF依赖的方式生存,因为用NKCC1抑制剂布美他尼阻断GABAA去极化可防止BDNF撤药时神经元的丢失。恢复期间KCC2表达的恢复与对生存的BDNF依赖性丧失相吻合。这很可能是通过BDNF本身来介导的,因为受伤的神经元通过将BDNF诱导的KCC2下调转换为上调来逆转对神经营养蛋白的反应。

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