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S334ter Rho 大鼠视网膜变性中的 ER 应激。

ER stress in retinal degeneration in S334ter Rho rats.

机构信息

Department of Cell Biology and Anatomy, University of North Texas Health Science Center, North Texas Eye Research Institute, Fort Worth, Texas, United States of America.

出版信息

PLoS One. 2012;7(3):e33266. doi: 10.1371/journal.pone.0033266. Epub 2012 Mar 14.

Abstract

The S334ter rhodopsin (Rho) rat (line 4) bears the rhodopsin gene with an early termination codon at residue 334 that is a model for several such mutations found in human patients with autosomal dominant retinitis pigmentosa (ADRP). The Unfolded Protein Response (UPR) is implicated in the pathophysiology of several retinal disorders including ADRP in P23H Rho rats. The aim of this study was to examine the onset of UPR gene expression in S334ter Rho retinas to determine if UPR is activated in ADRP animal models and to investigate how the activation of UPR molecules leads to the final demise of S334ter Rho photoreceptors. RT-PCR was performed to evaluate the gene expression profiles for the P10, P12, P15, and P21 stages of the development and progression of ADRP in S334ter Rho photoreceptors. We determined that during the P12-P15 period, ER stress-related genes are strongly upregulated in transgenic retinas, resulting in the activation of the UPR that was confirmed using western blot analysis and RT-PCR. The activation of UPR was associated with the increased expression of JNK, Bik, Bim, Bid, Noxa, and Puma genes and cleavage of caspase-12 that together with activated calpains presumably compromise the integrity of the mitochondrial MPTP, leading to the release of pro-apoptotic AIF1 into the cytosol of S334ter Rho photoreceptor cells. Therefore, two major cross-talking pathways, the UPR and mitochondrial MPTP occur in S334ter-4 Rho retina concomitantly and eventually promote the death of the photoreceptor cells.

摘要

S334ter 视蛋白(Rho)大鼠(第 4 行)携带视蛋白基因的一个提前终止密码子,该密码子位于 334 位残基,是几种在常染色体显性遗传视网膜色素变性(ADRP)患者中发现的突变的模型。未折叠蛋白反应(UPR)与几种视网膜疾病的病理生理学有关,包括 P23H Rho 大鼠的 ADRP。本研究的目的是检查 S334ter Rho 视网膜中 UPR 基因表达的起始,以确定 UPR 是否在 ADRP 动物模型中被激活,并研究 UPR 分子的激活如何导致 S334ter Rho 光感受器的最终死亡。进行 RT-PCR 以评估 S334ter Rho 光感受器中 ADRP 发育和进展的 P10、P12、P15 和 P21 阶段的基因表达谱。我们确定,在 P12-P15 期间,转基因视网膜中与内质网应激相关的基因强烈上调,导致 UPR 的激活,这通过 Western blot 分析和 RT-PCR 得到证实。UPR 的激活与 JNK、Bik、Bim、Bid、Noxa 和 Puma 基因的表达增加以及 caspase-12 的切割有关,这些基因与激活的钙蛋白酶一起破坏了线粒体 MPTP 的完整性,导致促凋亡 AIF1 进入 S334ter Rho 光感受器细胞的细胞质释放。因此,两种主要的交叉对话途径,UPR 和线粒体 MPTP,同时在 S334ter-4 Rho 视网膜中发生,并最终促进光感受器细胞的死亡。

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