Department of Biology, the University of Western Ontario, London, Ontario, Canada.
Am J Physiol Regul Integr Comp Physiol. 2022 Jul 1;323(1):R28-R42. doi: 10.1152/ajpregu.00008.2022. Epub 2022 Apr 26.
Complexes of the electron transport system can associate with each other to form supercomplexes (SCs) within mitochondrial membranes, perhaps increasing respiratory capacity or reducing reactive oxygen species production. In this study, we determined the abundance, composition, and stability of SCs in a mammalian hibernator, in which both whole animal and mitochondrial metabolism change greatly throughout winter. We isolated mitochondria from thirteen-lined ground squirrels () in different hibernation states, as well as from rats (). We extracted mitochondrial proteins using two nonionic detergents of different strengths and quantified SC abundance using two-dimensional gel electrophoresis and immunoblotting. Rat heart and liver had fewer SCs than ground squirrels. Within ground squirrels, SCs are dynamic, changing among hibernation states within a matter of hours. In brown adipose tissue, Complex III composition in different SCs differed between the torpid and interbout euthermic phase of a hibernation bout. In heart and liver, complex III composition changed between winter and summer. We also evaluated the stability of liver SCs using a stronger detergent and found that the stability of SCs differed; torpor SCs were more stable than the SCs of ground squirrels in other states and rats. This study is the first report of SC changes during hibernation and the first to demonstrate their dynamics on a short timescale.
电子传递系统的复合物可以相互关联,在线粒体膜内形成超级复合物 (SCs),这也许可以增加呼吸能力或减少活性氧物质的产生。在这项研究中,我们确定了哺乳动物冬眠动物中 SCs 的丰度、组成和稳定性,在整个冬季,动物和线粒体的新陈代谢都会发生巨大变化。我们从不同冬眠状态的十三线地松鼠()以及大鼠()中分离出线粒体,并使用两种不同强度的非离子去污剂提取线粒体蛋白,然后使用二维凝胶电泳和免疫印迹法定量 SC 的丰度。大鼠的心脏和肝脏的 SCs 比地松鼠少。在地松鼠中,SCs 是动态的,在几个小时内就会在冬眠状态之间发生变化。在棕色脂肪组织中,不同 SC 中的复合物 III 组成在冬眠发作的蛰伏和非发作间清醒期之间存在差异。在心脏和肝脏中,复合物 III 的组成在冬季和夏季之间发生了变化。我们还使用更强的去污剂评估了肝脏 SCs 的稳定性,发现 SCs 的稳定性存在差异;蛰伏期的 SCs 比其他状态的地松鼠和大鼠的 SCs 更稳定。本研究首次报道了冬眠期间 SC 的变化,并首次证明了它们在短时间尺度上的动态变化。