Massa R, Marliera L N, Martorana A, Cicconi S, Pierucci D, Giacomini P, De Pinto V, Castellani L
Dipartimento di Neuroscienze, Laboratorio di Medicina Molecolare, Università di Roma Tor Vergata, Italy.
J Muscle Res Cell Motil. 2000;21(5):433-42. doi: 10.1023/a:1005688901635.
Voltage-dependent anion channels (VDACs) are a family of pore-forming proteins encoded by different genes, with at least three protein products expressed in mammalian tissues. The major recognized functional role of VDACs is to permit the almost free permeability of the outer mitochondrial membrane (OMM). Although VDAC1 is the best known among VDAC isoforms, its exclusively mitochondrial location is still debated. Therefore, we have measured its co-localization with markers of cellular organelles or compartments in skeletal muscle fibers by single or double immunofluorescence and traditional as well as confocal microscopy. Our results show that VDAC1 immunoreactivity corresponds to mitochondria and sarcoplasmic reticulum, while sarcolemmal reactivity, previously reported, was not observed. Since VDAC1 has been suggested to be involved in the control of oxidative phosphorylation, we sought for possible gene regulation of VDAC1, VDAC2 and VDAC3 in skeletal muscle of the dystrophin-deficient mdx mouse, which suffers of an impaired control of energy metabolism. Our results show that, while VDAC1 mRNA and protein and VDAC2 mRNA are normally expressed. VDAC3 mRNA is markedly down-regulated in mdx mouse muscle at different ages (before, during and after the outburst of myofiber necrosis). This finding suggests a possible involvement of VDAC3 expression in the early pathogenic events of the mdx muscular dystrophy.
电压依赖性阴离子通道(VDACs)是一类由不同基因编码的成孔蛋白家族,在哺乳动物组织中至少表达三种蛋白产物。VDACs主要的公认功能是使线粒体外膜(OMM)具有几乎自由的通透性。尽管VDAC1是VDAC亚型中最知名的,但它仅定位于线粒体这一点仍存在争议。因此,我们通过单重或双重免疫荧光以及传统显微镜和共聚焦显微镜,测量了它与骨骼肌纤维中细胞器或区室标志物的共定位情况。我们的结果表明,VDAC1免疫反应性与线粒体和肌浆网相对应,而此前报道的肌膜反应性并未观察到。由于VDAC1被认为参与氧化磷酸化的调控,我们在肌营养不良蛋白缺陷的mdx小鼠的骨骼肌中寻找VDAC1、VDAC2和VDAC3可能的基因调控情况,mdx小鼠存在能量代谢控制受损的问题。我们的结果显示,虽然VDAC1的mRNA和蛋白以及VDAC2的mRNA正常表达,但VDAC3的mRNA在mdx小鼠不同年龄段(肌纤维坏死爆发之前、期间和之后)的肌肉中显著下调。这一发现提示VDAC3表达可能参与了mdx型肌营养不良症的早期致病事件。