Molecular basis of diseases induced by the mitochondrial DNA mutation m.9032T>C

Author:

Baranowska Emilia1,Niedzwiecka Katarzyna1,Panja Chiranjit1,Charles Camille2,Dautant Alain2,di Rago Jean-Paul2,Tribouillard-Tanvier Déborah2ORCID,Kucharczyk Roza1ORCID

Affiliation:

1. Polish Academy of Sciences Institute of Biochemistry and Biophysics, , 02-206 Warsaw , Poland

2. Univ. Bordeaux, CNRS, IBGC, UMR 5095 , F-33000 Bordeaux , France

Abstract

Abstract The mitochondrial DNA mutation m.9032T>C was previously identified in patients presenting with NARP (Neuropathy Ataxia Retinitis Pigmentosa). Their clinical features had a maternal transmission and patient’s cells showed a reduced oxidative phosphorylation capacity, elevated reactive oxygen species (ROS) production and hyperpolarization of the mitochondrial inner membrane, providing evidence that m.9032T>C is truly pathogenic. This mutation leads to replacement of a highly conserved leucine residue with proline at position 169 of ATP synthase subunit a (L169P). This protein and a ring of identical c-subunits (c-ring) move protons through the mitochondrial inner membrane coupled to ATP synthesis. We herein investigated the consequences of m.9032T>C on ATP synthase in a strain of Saccharomyces cerevisiae with an equivalent mutation (L186P). The mutant enzyme assembled correctly but was mostly inactive as evidenced by a  > 95% drop in the rate of mitochondrial ATP synthesis and absence of significant ATP-driven proton pumping across the mitochondrial membrane. Intragenic suppressors selected from L186P yeast restoring ATP synthase function to varying degrees (30–70%) were identified at the original mutation site (L186S) or in another position of the subunit a (H114Q, I118T). In light of atomic structures of yeast ATP synthase recently described, we conclude from these results that m.9032T>C disrupts proton conduction between the external side of the membrane and the c-ring, and that H114Q and I118T enable protons to access the c-ring through a modified pathway.

Funder

Association Française contre les Myopathies

University City Science Center

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

Reference70 articles.

1. Oxidative phosphorylation at the fin de siècle;Saraste;Science,1999

2. Mitochondrial respiratory-chain diseases;DiMauro;N. Engl. J. Med.,2003

3. Mitochondrial disorders as windows into an ancient organelle;Vafai;Nature,2012

4. Mitochondrial disorders;Zeviani;Curr. Opin. Neurol.,2007

5. Mitochondrial DNA mutations in disease and aging;Wallace;Environ. Mol. Mutagen.,2010

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