The mitochondrial ATP synthase is a negative regulator of the mitochondrial permeability transition pore

Author:

Pekson Ryan12ORCID,Liang Felix G.23,Axelrod Joshua L.23ORCID,Lee Jaehoon12ORCID,Qin Dongze12,Wittig Andre J. H.23,Paulino Victor M.23,Zheng Min12,Peixoto Pablo M.4ORCID,Kitsis Richard N.123ORCID

Affiliation:

1. Department of Medicine, Albert Einstein College of Medicine, Bronx, NY 10461

2. Wilf Family Cardiovascular Research Institute, Albert Einstein College of Medicine, Bronx, NY 10461

3. Department of Cell Biology, Albert Einstein College of Medicine, Bronx, NY 10461

4. Department of Natural Sciences, Baruch College and Program in Molecular, Cellular, and Developmental Biology, Graduate Center, City University of New York, New York, NY 10010

Abstract

The mitochondrial permeability transition pore (mPTP) is a channel in the inner mitochondrial membrane whose sustained opening in response to elevated mitochondrial matrix Ca 2+ concentrations triggers necrotic cell death. The molecular identity of mPTP is unknown. One proposed candidate is the mitochondrial ATP synthase, whose canonical function is to generate most ATP in multicellular organisms. Here, we present mitochondrial, cellular, and in vivo evidence that, rather than serving as mPTP, the mitochondrial ATP synthase inhibits this pore. Our studies confirm previous work showing persistence of mPTP in HAP1 cell lines lacking an assembled mitochondrial ATP synthase. Unexpectedly, however, we observe that Ca 2+ -induced pore opening is markedly sensitized by loss of the mitochondrial ATP synthase. Further, mPTP opening in cells lacking the mitochondrial ATP synthase is desensitized by pharmacological inhibition and genetic depletion of the mitochondrial cis-trans prolyl isomerase cyclophilin D as in wild-type cells, indicating that cyclophilin D can modulate mPTP through substrates other than subunits in the assembled mitochondrial ATP synthase. Mitoplast patch clamping studies showed that mPTP channel conductance was unaffected by loss of the mitochondrial ATP synthase but still blocked by cyclophilin D inhibition. Cardiac mitochondria from mice whose heart muscle cells we engineered deficient in the mitochondrial ATP synthase also demonstrate sensitization of Ca 2+ -induced mPTP opening and desensitization by cyclophilin D inhibition. Further, these mice exhibit strikingly larger myocardial infarctions when challenged with ischemia/reperfusion in vivo. We conclude that the mitochondrial ATP synthase does not function as mPTP and instead negatively regulates this pore.

Funder

NIH/NHLBI

NIH/NIGMS

American Heart Association

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

Reference60 articles.

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