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首页> 外文期刊>Progress in brain research >Involvement of the Bcl2 gene family in the signaling and control of retinal ganglion cell death.
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Involvement of the Bcl2 gene family in the signaling and control of retinal ganglion cell death.

机译:Bcl2基因家族参与视网膜神经节细胞死亡的信号传导和控制。

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摘要

Retinal ganglion cell death by apoptosis is a well-established outcome in the glaucomatous pathology of the retina. Extensive research into the molecular events underlying this process show us that members of the Bcl2 gene family play a critical role in the activation and control of ganglion cell death. Perhaps the most critical molecule at play is the pro-apoptotic protein BAX. Without BAX, ganglion cell somas appear to survive an optic nerve insult indefinitely. Once BAX is activated, however, the cell death program reaches an irreversible point, where the process cannot be blocked. Interacting with BAX are other members of this larger gene family, including the anti-apoptotic protein BCL-X, and several members of the BH3-only proteins that serve as sensors and activators of the cell death program. A hypothetical model of how all these molecules interact in glaucoma is presented.
机译:在视网膜的青光眼病理中,由凋亡引起的视网膜神经节细胞死亡是公认的结果。对这一过程背后的分子事件的广泛研究表明,Bcl2基因家族的成员在神经节细胞死亡的激活和控制中起着至关重要的作用。作用中最关键的分子可能是促凋亡蛋白BAX。没有BAX,神经节细胞体似乎可以无限期幸存于视神经损伤中。但是,一旦激活了BAX,细胞死亡程序就会到达不可逆转的地步,无法阻止该进程。与BAX相互作用的是这个更大的基因家族的其他成员,包括抗凋亡蛋白BCL-X,以及仅BH3蛋白的一些成员,它们可以作为细胞死亡程序的传感器和激活剂。提出了所有这些分子如何在青光眼中相互作用的假想模型。

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