State Key Laboratory of Membrane Biology, Institute of Molecular Medicine, Peking-Tsinghua Center for Life Sciences, Peking University, Beijing 100871, China.
Department of Physiology and Pathophysiology, Health Science Center, Peking University, Beijing 100191, China.
J Mol Cell Cardiol. 2016 Feb;91:63-71. doi: 10.1016/j.yjmcc.2015.10.036. Epub 2015 Dec 30.
Cyclophilin D (CyP-D) is the mitochondrial-specific member of the evolutionally conserved cyclophilin family, and plays an important role in the regulation of mitochondrial permeability transition (MPT) under stress. Recently we have demonstrated that respiratory mitochondria undergo mitochondrial flash ("mitoflash") activity which is coupled with transient MPT under physiological conditions. However, whether and how CyP-D regulates mitoflashes remain incompletely understood. By using both loss- and gain-of-function approaches in isolated cardiomyocytes, beating hearts, and skeletal muscles in living mice, we revisited the role of CyP-D in the regulation of mitoflashes. Overexpression of CyP-D increased, and knockout of it halved, cardiac mitoflash frequency, while mitoflash amplitude and kinetics remained unaffected. However, CyP-D ablation did not alter mitoflash frequency, with mitoflash amplitude increased, in gastrocnemius muscles. This disparity was accompanied by 4-fold higher CyP-D expression in mouse cardiac than skeletal muscles. The mitochondrial maximal respiration rate and reserved capacity were reduced in CyP-D-null cardiomyocytes. These data indicate that CyP-D is a significant regulator of mitoflash ignition and mitochondrial metabolism in heart. In addition, tissue-specific CyP-D expression may partly explain the differential regulation of mitoflashes in the two types of striated muscles.
亲环蛋白 D(CyP-D)是进化上保守的亲环蛋白家族中具有线粒体特异性的成员,在应激下调节线粒体通透性转换(MPT)中发挥重要作用。最近我们已经证明,呼吸线粒体在生理条件下会发生与瞬时 MPT 偶联的线粒体闪烁(“mitoflash”)活性。然而,CyP-D 是否以及如何调节 mitoflashes 仍不完全清楚。通过在分离的心肌细胞、跳动的心脏和活体小鼠的骨骼肌中使用失活和功能获得两种方法,我们重新研究了 CyP-D 在调节 mitoflashes 中的作用。CyP-D 的过表达增加了心脏 mitoflash 的频率,而敲除则使其减半,而 mitoflash 的幅度和动力学保持不变。然而,CyP-D 缺失并没有改变比目鱼肌的 mitoflash 频率,而 mitoflash 的幅度增加了。这种差异伴随着心脏中比骨骼肌中 CyP-D 表达高出 4 倍。CyP-D 缺失的心肌细胞中线粒体最大呼吸率和储备能力降低。这些数据表明,CyP-D 是心脏中 mitoflash 点火和线粒体代谢的重要调节因子。此外,组织特异性的 CyP-D 表达可能部分解释了两种类型的横纹肌中 mitoflashes 的差异调节。