Department of Ophthalmology and Visual Sciences, W.K. Kellogg Eye Center, University of Michigan, Ann Arbor, MI 48105, USA.
Cell Death Differ. 2017 Oct;24(10):1799-1810. doi: 10.1038/cdd.2017.109. Epub 2017 Jul 14.
We report the neuroprotective role of FAS apoptotic inhibitory molecule 2 (FAIM2), an inhibitor of the FAS signaling pathway, during stress-induced photoreceptor apoptosis. Retinal detachment resulted in increased FAIM2 levels in photoreceptors with higher amounts detected at the tips of outer segments. Activation of FAS death receptor via FAS-ligand led to JNK-mediated FAIM2 phosphorylation, decreased proteasome-mediated degradation and increased association with the FAS receptor. Photoreceptor apoptosis was accelerated in Faim2 knockout mice following experimental retinal detachment. We show that FAIM2 is primarily involved in reducing stress-induced photoreceptor cell death but this effect was transient. FAIM2 was found to interact with both p53 and HSP90 following the activation of the FAS death pathway and FAIM2/HSP90 interaction was dependent on the phosphorylation of FAIM2. Lack of FAIM2 led to increased expression of proadeath genes Fas and Ripk1 in the retina under physiologic conditions. These results demonstrate that FAIM2 is an intrinsic neuroprotective factor activated by stress in photoreceptors and delays FAS-mediated photoreceptor apoptosis. Modulation of this pathway to increase FAIM2 expression may be a potential therapeutic option to prevent photoreceptor death.
我们报告了 FAS 凋亡抑制分子 2(FAIM2)在应激诱导的光感受器凋亡中的神经保护作用,FAIM2 是 FAS 信号通路的抑制剂。视网膜脱离导致光感受器中 FAIM2 水平升高,在外节尖端检测到的量更高。通过 FAS 配体激活 FAS 死亡受体导致 JNK 介导的 FAIM2 磷酸化,减少蛋白酶体介导的降解,并增加与 FAS 受体的结合。实验性视网膜脱离后,Faim2 基因敲除小鼠的光感受器凋亡加速。我们表明,FAIM2 主要参与减少应激诱导的光感受器细胞死亡,但这种作用是短暂的。FAIM2 被发现与 p53 和 HSP90 相互作用,随后 FAS 死亡途径被激活,FAIM2/HSP90 相互作用依赖于 FAIM2 的磷酸化。在生理条件下,FAIM2 的缺乏导致视网膜中促凋亡基因 Fas 和 Ripk1 的表达增加。这些结果表明,FAIM2 是一种内在的神经保护因子,在光感受器中被应激激活,并延迟 FAS 介导的光感受器凋亡。调节该途径以增加 FAIM2 的表达可能是预防光感受器死亡的潜在治疗选择。