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首页> 外文期刊>Science Advances >Targeted disruption of Kv2.1-VAPA association provides neuroprotection against ischemic stroke in mice by declustering Kv2.1 channels
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Targeted disruption of Kv2.1-VAPA association provides neuroprotection against ischemic stroke in mice by declustering Kv2.1 channels

机译:kV2.1-VAPA协会的有针对性的破坏通过降低kV2.1通道,为小鼠进行了神经保护症对小鼠的缺血性脑卒中

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摘要

Kv2.1 channels mediate cell death–enabling loss of cytosolic potassium in neurons following plasma membrane insertion at somatodendritic clusters. Overexpression of the carboxyl terminus (CT) of the cognate channel Kv2.2 is neuroprotective by disrupting Kv2.1 surface clusters. Here, we define a seven–amino acid declustering domain within Kv2.2 CT (DP-2) and demonstrate its neuroprotective efficacy in a murine ischemia-reperfusion model. TAT-DP-2, a membrane-permeable derivative, induces Kv2.1 surface cluster dispersal, prevents post-injurious pro-apoptotic potassium current enhancement, and is neuroprotective in vitro by disrupting the association of Kv2.1 with VAPA. TAT-DP-2 also induces Kv2.1 cluster dispersal in vivo in mice, reducing infarct size and improving long-term neurological function following stroke. We suggest that TAT-DP-2 induces Kv2.1 declustering by disrupting Kv2.1-VAPA association and scaffolding sites required for the membrane insertion of Kv2.1 channels following injury. We present the first evidence of targeted disruption of Kv2.1-VAPA association as a neuroprotective strategy following brain ischemia.
机译:KV2.1通道介导细胞死亡在血浆膜插入在躯体膜在躯体膜插入群中的神经元中的细胞溶胶损失。通过破坏kV2.1表面簇,对同源通道Kv2.2的羧基末端(CT)的过表达是神经保护。在此,我们在KV2.2CT(DP-2)中定义七氨基酸降解结构域,并证明其在鼠缺血再灌注模型中的神经保护效果。 TAT-DP-2,膜可渗透的衍生物,诱导kV2.1表面簇分散,防止损伤后的促凋亡钾电流增强,并通过破坏KV2.1与VAPA的关联进行神经保护。 TAT-DP-2还诱导小鼠体内kV2.1簇分散,减少梗塞大小并改善行程后的长期神经功能。我们表明TAT-DP-2通过破坏损伤后膜插入的kV2.1-VAPA关联和支架位点来诱导KV2.1降低。我们提出了脑缺血后作为神经保护策略的目标破坏的第一种证据。

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