Biological Sciences, Michigan Technological University, Houghton, Michigan 49931, United States.
Biochemistry. 2011 Oct 4;50(39):8342-51. doi: 10.1021/bi2008933. Epub 2011 Sep 12.
Mitochondrial-nuclear communication is critical for maintaining mitochondrial activity under stress conditions. Adaptation of the mitochondrial-nuclear network to changes in the intracellular oxidation and reduction milieu is critical for the survival of retinal and retinal pigment epithelial (RPE) cells, in relation to their high oxygen demand and rapid metabolism. However, the generation and transmission of the mitochondrial signal to the nucleus remain elusive. Previously, our in vivo study revealed that prohibitin is upregulated in the retina, but downregulated in RPE cells in the aging and diabetic model. In this study, the functional role of prohibitin in the retina and RPE cells was examined using biochemical methods, including a lipid binding assay, two-dimensional gel electrophoresis, immunocytochemistry, Western blotting, and a knockdown approach. Protein depletion by siRNA characterized prohibitin as an anti-apoptotic molecule in mitochondria, while the lipid binding assay demonstrated subcellular communication between mitochondria and the nucleus under oxidative stress. The changes in the expression and localization of mitochondrial prohibitin triggered by reactive oxygen species are crucial for mitochondrial integrity. We propose that prohibitin shuttles between mitochondria and the nucleus as an anti-apoptotic molecule and a transcriptional regulator in a stress environment in the retina and RPE cells.
线粒体-核通讯对于维持应激条件下的线粒体活性至关重要。线粒体-核网络适应细胞内氧化还原环境的变化对于视网膜和视网膜色素上皮 (RPE) 细胞的存活至关重要,因为它们的氧气需求高且代谢迅速。然而,线粒体信号向细胞核的传递仍然难以捉摸。之前,我们的体内研究表明,在衰老和糖尿病模型中,抑制素在视网膜中上调,但在 RPE 细胞中下调。在这项研究中,使用生化方法,包括脂质结合测定、二维凝胶电泳、免疫细胞化学、Western blot 和敲低方法,研究了抑制素在视网膜和 RPE 细胞中的功能作用。siRNA 蛋白耗竭将抑制素鉴定为线粒体中的抗凋亡分子,而脂质结合测定则证明了氧化应激下线粒体和细胞核之间的亚细胞通讯。活性氧引起的线粒体抑制素表达和定位的变化对于线粒体完整性至关重要。我们提出,抑制素作为一种抗凋亡分子和应激环境中的转录调节剂,在视网膜和 RPE 细胞中线粒体和细胞核之间穿梭。