INSERM, U-769, Faculté de Pharmacie, Université Paris-Sud, 5 rue J-B Clément, F-92296 Châtenay-Malabry, France.
Cardiovasc Res. 2012 Jun 1;94(3):408-17. doi: 10.1093/cvr/cvs117. Epub 2012 Mar 8.
The optic atrophy 1 (OPA1) protein is an essential protein involved in the fusion of the mitochondrial inner membrane. Despite its high level of expression, the role of OPA1 in the heart is largely unknown. We investigated the role of this protein in Opa1(+/-) mice, having a 50% reduction in OPA1 protein expression in cardiac tissue.
In mutant mice, cardiac function assessed by echocardiography was not significantly different from that of the Opa1(+/+). Electron and fluorescence microscopy revealed altered morphology of the Opa1(+/-) mice mitochondrial network; unexpectedly, mitochondria were larger with the presence of clusters of fused mitochondria and altered cristae. In permeabilized mutant ventricular fibres, mitochondrial functional properties were maintained, but direct energy channelling between mitochondria and myofilaments was weakened. Importantly, the mitochondrial permeability transition pore (PTP) opening in isolated permeabilized cardiomyocytes and in isolated mitochondria was significantly less sensitive to mitochondrial calcium accumulation. Finally, 6 weeks after transversal aortic constriction, Opa1(+/-) hearts demonstrated hypertrophy almost two-fold higher (P< 0.01) than in wild-type mice with altered ejection fraction (decrease in 43 vs. 22% in Opa1(+/+) mice, P< 0.05).
These results suggest that, in adult cardiomyocytes, OPA1 plays an important role in mitochondrial morphology and PTP functioning. These properties may be critical for cardiac function under conditions of chronic pressure overload.
视神经萎缩 1(OPA1)蛋白是一种参与线粒体内膜融合的必需蛋白。尽管其表达水平很高,但 OPA1 在心脏中的作用在很大程度上尚不清楚。我们研究了这种蛋白在 Opa1(+/-) 小鼠中的作用,这些小鼠心脏组织中 OPA1 蛋白的表达减少了 50%。
在突变小鼠中,通过超声心动图评估的心脏功能与 Opa1(+/+)小鼠没有显著差异。电子显微镜和荧光显微镜显示 Opa1(+/-) 小鼠的线粒体网络形态发生改变;出乎意料的是,线粒体更大,存在融合线粒体的簇和改变的嵴。在渗透突变的心室纤维中,线粒体功能特性得以维持,但线粒体和肌丝之间的直接能量通道减弱。重要的是,分离的渗透心肌细胞和分离的线粒体中线粒体通透性转换孔(PTP)的开放对线粒体钙积累的敏感性明显降低。最后,在横主动脉缩窄 6 周后,Opa1(+/-)心脏的肥大程度几乎是野生型小鼠的两倍(P<0.01),射血分数改变(Opa1(+/+)小鼠下降 43%,而野生型小鼠下降 22%,P<0.05)。
这些结果表明,在成年心肌细胞中,OPA1 在线粒体形态和 PTP 功能中发挥重要作用。这些特性对于慢性压力超负荷下的心脏功能可能至关重要。