The mutation R107Q alters mtSSB ssDNA compaction ability and binding dynamics

Author:

Martucci Martial1,Moretton Amandine1ORCID,Tarrés-Solé Aleix2,Ropars Virginie3,Lambert Louise14,Vernet Patrick1,Solà Maria2ORCID,Falkenberg Maria4,Farge Geraldine1ORCID,van den Wildenberg Siet15

Affiliation:

1. Université Clermont Auvergne, CNRS, Laboratoire de Physique de Clermont , F-63000 Clermont-Ferrand , France

2. Structural MitoLab, Molecular Biology Institute Barcelona (IBMB-CSIC), Barcelona Science Park , Barcelona 08028 , Spain

3. Université Paris-Saclay, CEA, CNRS, Institute for Integrative Biology of the Cell (I2BC) , 91198 Gif-sur-Yvette , France

4. Department of Medical Biochemistry and Cell Biology, University of Gothenburg , P.O. Box 440 , SE-405 30 Gothenburg , Sweden

5. Université Clermont Auvergne, CNRS, IRD, Université Jean Monnet Saint Etienne, LMV , F-63000 Clermont-Ferrand , France

Abstract

Abstract Mitochondrial single-stranded DNA-binding protein (mtSSB) is essential for mitochondrial DNA (mtDNA) replication. Recently, several mtSSB variants have been associated with autosomal dominant mitochondrial optic atrophy and retinal dystrophy. Here, we have studied at the molecular level the functional consequences of one of the most severe mtSSB variants, R107Q. We first studied the oligomeric state of this variant and observed that the mtSSBR107Q mutant forms stable tetramers in vitro. On the other hand, we showed, using complementary single-molecule approaches, that mtSSBR107Q displays a lower intramolecular ssDNA compaction ability and a higher ssDNA dissociation rate than the WT protein. Real-time competition experiments for ssDNA-binding showed a marked advantage of mtSSBWT over mtSSBR107Q. Combined, these results show that the R107Q mutation significantly impaired the ssDNA-binding and compacting ability of mtSSB, likely by weakening mtSSB ssDNA wrapping efficiency. These features are in line with our molecular modeling of ssDNA on mtSSB showing that the R107Q mutation may destabilize local interactions and results in an electronegative spot that interrupts an ssDNA-interacting-electropositive patch, thus reducing the potential mtSSB-ssDNA interaction sites.

Funder

Association Française Contre les Myopathies Téléthon

Swedish Research Council

Swedish Cancer Foundation

Knut and Alice Wallenberg Foundation

Spanish Ministry of Science

European Regional Development Fund

Generalitat de Catalunya

French Infrastructure for Integrated Structural Biology

Publisher

Oxford University Press (OUP)

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