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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >In vivo contributions of BH3-only proteins to neuronal death following seizures, ischemia, and traumatic brain injury.
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In vivo contributions of BH3-only proteins to neuronal death following seizures, ischemia, and traumatic brain injury.

机译:癫痫发作,局部缺血和脑外伤后,仅BH3蛋白在体内对神经元死亡的贡献。

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摘要

The Bcl-2 homology (BH) domain 3-only proteins are a proapoptotic subgroup of the Bcl-2 gene family, which regulate cell death via effects on mitochondria. The BH3-only proteins react to various cell stressors and promote cell death by binding and inactivating antiapoptotic Bcl-2 family members and direct activation of proapoptotic multi-BH domain proteins such as Bax. Here, we review the in vivo evidence for their involvement in the pathophysiology of status epilepticus and contrast it to ischemia and traumatic brain injury. Seizures in rodents activate three potent proapoptotic BH3-only proteins: Bid, Bim, and Puma. Analysis of damage after seizures in mice singly deficient for each BH3-only protein supports a causal role for Puma and to a lesser extent Bim but, surprisingly, not Bid. In ischemia and trauma, where core aspects of the pathophysiology of cell death overlap, multiple BH3-only proteins are also activated and Bid has been shown to be required for neuronal death. The findings suggest that while each neurologic insult activates multiple BH3-only proteins, there may be specificity in their functional contribution. Future challenges include evaluating the remaining BH3-only proteins, explaining different causal contributions, and, if possible, exploring neurologic outcomes in mouse models deficient for multiple BH3-only proteins.
机译:Bcl-2同源性(BH)域仅3蛋白是Bcl-2基因家族的一个促凋亡亚组,它通过影响线粒体来调节细胞死亡。仅BH3蛋白与各种细胞应激物反应,并通过结合和灭活抗凋亡Bcl-2家族成员以及直接激活促凋亡多BH域蛋白(例如Bax)来促进细胞死亡。在这里,我们审查了体内证据,证明他们参与了癫痫持续状态的病理生理,并将其与缺血和脑外伤进行了对比。啮齿动物的癫痫发作会激活三种有效的仅BH3促凋亡蛋白:Bid,Bim和Puma。对每种仅含BH3蛋白的小鼠癫痫发作后的损伤进行的分析支持Puma的因果作用,在较小程度上支持Bim,但令人惊讶的是,没有Bid。在局部缺血和创伤中,细胞死亡的病理生理学的核心方面重叠,多个仅BH3的蛋白质也被激活,并且Bid已被证明是神经元死亡所必需的。这些发现表明,尽管每一次神经损伤都会激活多种仅BH3的蛋白质,但它们的功能贡献可能存在特异性。未来的挑战包括评估剩余的仅BH3蛋白,解释不同的因果关系,并在可能的情况下探索缺乏多种仅BH3蛋白的小鼠模型的神经系统结果。

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