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Chloride transporter KCC2-dependent neuroprotection depends on the N-terminal protein domain

机译:氯化物转运蛋白KCC2依赖性神经保护作用取决于N末端蛋白结构域

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摘要

Neurodegeneration is a serious issue of neurodegenerative diseases including epilepsy. Downregulation of the chloride transporter KCC2 in the epileptic tissue may not only affect regulation of the polarity of GABAergic synaptic transmission but also neuronal survival. Here, we addressed the mechanisms of KCC2-dependent neuroprotection by assessing truncated and mutated KCC2 variants in different neurotoxicity models. The results identify a threonine- and tyrosine-phosphorylation-resistant KCC2 variant with increased chloride transport activity, but they also identify the KCC2 N-terminal domain (NTD) as the relevant minimal KCC2 protein domain that is sufficient for neuroprotection. As ectopic expression of the KCC2-NTD works independently of full-length KCC2-dependent regulation of Cl? transport or structural KCC2 C-terminus-dependent regulation of synaptogenesis, our study may pave the way for a selective neuroprotective therapeutic strategy that will be applicable to a wide range of neurodegenerative diseases.
机译:神经变性是包括癫痫症在内的神经退行性疾病的严重问题。癫痫组织中氯化物转运蛋白KCC2的下调不仅可能影响GABA能突触传递极性的调节,而且还会影响神经元的存活。在这里,我们通过评估在不同的神经毒性模型中截短和突变的KCC2变体,解决了KCC2依赖性神经保护的机制。结果鉴定出具有增加的氯化物转运活性的抗苏氨酸和酪氨酸磷酸化的KCC2变体,但他们也鉴定出KCC2 N末端结构域(NTD)是相关的最小KCC2蛋白结构域,足以进行神经保护。由于KCC2-NTD的异位表达独立于Cl ?转运的全长KCC2依赖性调节或突触形成的结构性KCC2 C端依赖性调节,我们的研究可能为选择性的铺平道路。神经保护性治疗策略,将适用于多种神经退行性疾病。

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