Department of Biology, University of Genoa, Viale Benedetto XV, 5, 16132 Genova, Italy.
Biochimie. 2011 Sep;93(9):1565-75. doi: 10.1016/j.biochi.2011.05.020. Epub 2011 Jun 13.
Vertebrate retinal rod Outer Segments (OS) are the site of visual transduction, an energy demanding process for which mechanisms of ATP supply are still poorly known. Glycolysis or diffusion of either ATP or phosphocreatine from the Inner Segment (IS) does not seem to display adequate timing to supply ATP for phototransduction. We have previously reported data suggesting an aerobic metabolism in OS, which would largely account for the light-stimulated ATP need of the photoreceptor. Here, by oxymetry and biochemical analyses we show that: (i) disks isolated by Ficoll flotation consume O(2) in the presence of physiological respiring substrates either in coupled or uncoupled conditions; (ii) OS homogenates contain the whole biochemical machinery for the degradation of glucose, i.e. glycolysis and the tricarboxylic acid cycle (TCA cycle), consistently with the results of our previous proteomic study. Activities of the 8 TCA cycle enzymes in OS were comparable to those in retinal mitochondria-enriched fractions. Disk and OS preparations were subjected to TEM analysis, and while they can be considered free of inner segment contaminants, immunogold with specific antibodies demonstrate the expression therein of both the visual pigment rhodopsin and F(o)F(1)-ATP synthase. Finally, double immunofluorescence on mouse retina sections demonstrated a colocalization of some respiratory complex mitochondrial proteins with rhodopsin in rod OS. Data, suggestive of the exportability of the mitochondrial machinery for aerobic metabolism, may shed light on those retinal pathologies related to energy supply impairment in OS and to mutations in TCA enzymes.
脊椎动物视网膜视杆外节(OS)是视觉转导的部位,这是一个能量需求很高的过程,其 ATP 供应机制仍知之甚少。糖酵解或从内节(IS)扩散的 ATP 或磷酸肌酸似乎没有显示出足够的时间来为光转导提供 ATP。我们之前报告的数据表明 OS 中存在有氧代谢,这将在很大程度上解释光感受器的光刺激 ATP 需求。在这里,通过测氧法和生化分析,我们表明:(i)通过 Ficoll 漂浮分离的盘在存在生理呼吸底物的情况下,无论是在偶联还是非偶联条件下都会消耗 O(2);(ii)OS 匀浆含有降解葡萄糖的整个生化机制,即糖酵解和三羧酸循环(TCA 循环),与我们之前的蛋白质组学研究结果一致。OS 中 8 种 TCA 循环酶的活性与富含视网膜线粒体的部分相当。盘和 OS 制剂进行 TEM 分析,虽然它们可以被认为没有内节污染物,但用特异性抗体进行免疫金标记表明视觉色素视蛋白和 F(o)F(1)-ATP 合酶都在其中表达。最后,在小鼠视网膜切片上进行双重免疫荧光染色显示,一些呼吸复合物线粒体蛋白与视杆 OS 中的视蛋白发生共定位。这些提示线粒体有氧代谢机制可输出的的数据,可能阐明与 OS 中能量供应受损和 TCA 酶突变相关的那些视网膜病理学。