| Literature DB >> 26923168 |
Sylvie Bannwarth1, Laetitia Berg-Alonso2, Gaëlle Augé1, Konstantina Fragaki1, Jill E Kolesar3, Françoise Lespinasse2, Sandra Lacas-Gervais4, Fanny Burel-Vandenbos5, Elodie Villa6, Frances Belmonte3, Jean-François Michiels5, Jean-Ehrland Ricci6, Romain Gherardi7, Lea Harrington8, Brett A Kaufman3, Véronique Paquis-Flucklinger9.
Abstract
Mutations in genes coding for mitochondrial helicases such as TWINKLE and DNA2 are involved in mitochondrial myopathies with mtDNA instability in both human and mouse. We show that inactivation of Pif1, a third member of the mitochondrial helicase family, causes a similar phenotype in mouse. pif1-/- animals develop a mitochondrial myopathy with respiratory chain deficiency. Pif1 inactivation is responsible for a deficiency to repair oxidative stress-induced mtDNA damage in mouse embryonic fibroblasts that is improved by complementation with mitochondrial isoform mPif1(67). These results open new perspectives for the exploration of patients with mtDNA instability disorders.Entities:
Keywords: Mitochondrial disease; Mitochondrial myopathy; Pif1 helicase; mtDNA instability
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Year: 2016 PMID: 26923168 PMCID: PMC5454384 DOI: 10.1016/j.mito.2016.02.005
Source DB: PubMed Journal: Mitochondrion ISSN: 1567-7249 Impact factor: 4.160