Mitochondrial cardiomyopathies feature increased uptake and diminished efflux of mitochondrial calcium

被引:39
|
作者
Sommakia, Salah [1 ]
Houlihan, Patrick R. [2 ,5 ]
Deane, Sadiki S. [1 ]
Simcox, Judith A. [3 ]
Torres, Natalia S. [1 ]
Jeong, Mi-Young [3 ,4 ]
Winge, Dennis R. [3 ,4 ]
Villanueva, Claudio J. [3 ]
Chaudhuri, Dipayan [1 ]
机构
[1] Univ Utah, Nora Eccles Harrison Cardiovasc Res & Training In, Cardiol Div, Dept Internal Med, Salt Lake City, UT USA
[2] Boston Childrens Hosp, Dept Cardiol, Boston, MA USA
[3] Univ Utah, Dept Biochem, Salt Lake City, UT USA
[4] Univ Utah, Dept Internal Med, Salt Lake City, UT USA
[5] Howard Hughes Med Inst, Ashburn, VA USA
关键词
Mitochondrial calcium uniporter; Mitochondrial sodium-calcium exchanger; Whole-mitoplast electrophysiology; Cardiac metabolism; Respiratory-chain deficient cardiomyopathy; OXPHOS deficient cardiomyopathy; CA2+ UPTAKE; ESSENTIAL COMPONENT; HEART-FAILURE; TRANSCRIPTION FACTOR; OXIDATIVE DAMAGE; INNER MEMBRANE; UNIPORTER; PROTEIN; MCUR1; STRESS;
D O I
10.1016/j.yjmcc.2017.09.009
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Calcium (Ca2+) influx into the mitochondrial matrix stimulates ATP synthesis. Here, we investigate whether mitochondrial Ca2+ transport pathways are altered in the setting of deficient mitochondrial energy synthesis, as increased matrix Ca2+ may provide a stimulatory boost. We focused on mitochondrial cardiomyopathies, which feature such dysfunction of oxidative phosphorylation. We study a mouse model where the main transcription factor for mitochondrial DNA (transcription factor A, mitochondrial, Tfam) has been disrupted selectively in cardiomyocytes. By the second postnatal week (10-15 day old mice), these mice have developed a dilated cardiomyopathy associated with impaired oxidative phosphorylation. We find evidence of increased mitochondrial Ca2+ during this period using imaging, electrophysiology, and biochemistry. The mitochondrial Ca2+ uniporter, the main portal for Ca2+ entry, displays enhanced activity, whereas the mitochondrial sodium calcium (Ha-Ca2+) exchanger, the main portal for Ca2+ efflux, is inhibited. These changes in activity reflect changes in protein expression of the corresponding transporter subunits. While decreased transcription of Nclx, the gene encoding the Na+-Ca2+ exchanger, explains diminished Na+-Ca2+ exchange, the mechanism for enhanced uniporter expression appears to be post -transcriptional. Notably, such changes allow cardiac mitochondria from Tfam knockout animals to be far more sensitive to Ca2+-induced increases in respiration. In the absence of Ca-2+,Ca- oxygen consumption declines to less than half of control values in these animals, but rebounds to control levels when incubated with Ca2+. Thus, we demonstrate a phenotype of enhanced mitochondrial Ca2+ in a mitochondrial cardiomyopathy model, and show that such Ca2+ accumulation is capable of rescuing deficits in energy synthesis capacity in vitro.
引用
收藏
页码:22 / 32
页数:11
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