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KCC2 is required for the survival of mature neurons but not for their development

机译:kcc2是成熟神经元的存活所必需的但不是为了他们的发展

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摘要

The K+/Cl− cotransporter KCC2 (SLC12A5) allows mature neurons in the CNS to maintain low intracellular Cl− levels that are critical in mediating fast hyperpolarizing synaptic inhibition via type A γ-aminobutyric acid receptors (GABAARs). In accordance with this, compromised KCC2 activity results in seizures, but whether such deficits directly contribute to the subsequent changes in neuronal structure and viability that lead to epileptogenesis remains to be assessed. Canonical hyperpolarizing GABAAR currents develop postnatally, which reflect a progressive increase in KCC2 expression levels and activity. To investigate the role that KCC2 plays in regulating neuronal viability and architecture, we have conditionally ablated KCC2 expression in developing and mature neurons. Decreasing KCC2 expression in mature neurons resulted in the rapid activation of the extrinsic apoptotic pathway. Intriguingly, direct pharmacological inhibition of KCC2 in mature neurons was sufficient to rapidly induce apoptosis, an effect that was not abrogated via blockade of neuronal depolarization using tetrodotoxin (TTX). In contrast, ablating KCC2 expression in immature neurons had no discernable effects on their subsequent development, arborization, or dendritic structure. However, removing KCC2 in immature neurons was sufficient to ablate the subsequent postnatal development of hyperpolarizing GABAAR currents. Collectively, our results demonstrate that KCC2 plays a critical role in neuronal survival by limiting apoptosis, and mature neurons are highly sensitive to the loss of KCC2 function. In contrast, KCC2 appears to play a minimal role in mediating neuronal development or architecture.
机译:K + / Cl-Cotoransporter Kcc2(SLC12A5)允许CNS中的成熟神经元维持低细胞内CL-水平,这对于介导快速超积极化突触突触抑制通过类型Aγ-氨基丁酸受体(GABAARS)至关重要。根据这,受损的KCC2活性导致癫痫发作,但是这种缺陷是否直接有助于随后的神经元结构和活力导致癫痫发生的活力仍有待评估。公正的超极化性Gabaar电流出现后发育,反映了KCC2表达水平和活性的逐渐增加。为了探讨KCC2在调节神经元生存能力和架构方面发挥作用,我们在显影和成熟神经元中有有条件烧蚀的KCC2表达。降低成熟神经元中的Kcc2表达导致外部凋亡途径的快速激活。有趣的是,在成熟神经元中Kcc2的直接药理学抑制足以快速诱导细胞凋亡,其效果通过使用四曲蛋白(TTX)通过阻断神经元去氧而没有废除。相反,未成熟神经元中的烧蚀KCC2表达对其随后的发育,植物或树突结构没有可辨别的影响。然而,在未成熟的神经元中除去Kcc2足以消除过度渗透的GABAAR电流的后续产后发育。统称,我们的结果表明KCC2通过限制细胞凋亡,在神经元生存中起着关键作用,并且成熟的神经元对KCC2功能的损失非常敏感。相比之下,KCC2似乎在调解神经元发展或建筑中发挥最小作用。

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