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Pseudouridine synthase 1 deficient mice, a model for Mitochondrial Myopathy with Sideroblastic Anemia, exhibit muscle morphology and physiology alterations

Authors :
Jeffrey R. Patton
Joshua E. Mangum
Anoop K. Sendamarai
Shayne C. Barlow
Melissa J. Puppa
Hart G.W. Lidov
Nathan Fischel-Ghodsian
Paul J. Schmidt
Diego Altomare
Johnathon Elkes
James A. Carson
Justin P. Hardee
Dean R. Campagna
Dennis K. Fix
Yelena Bykhovskaya
Mark D. Fleming
Source :
Scientific Reports
Publication Year :
2015

Abstract

Mitochondrial myopathy with lactic acidosis and sideroblastic anemia (MLASA) is an oxidative phosphorylation disorder, with primary clinical manifestations of myopathic exercise intolerance and a macrocytic sideroblastic anemia. One cause of MLASA is recessive mutations in PUS1, which encodes pseudouridine (Ψ) synthase 1 (Pus1p). Here we describe a mouse model of MLASA due to mutations in PUS1. As expected, certain Ψ modifications were missing in cytoplasmic and mitochondrial tRNAs from Pus1−/− animals. Pus1−/− mice were born at the expected Mendelian frequency and were non-dysmorphic. At 14 weeks the mutants displayed reduced exercise capacity. Examination of tibialis anterior (TA) muscle morphology and histochemistry demonstrated an increase in the cross sectional area and proportion of myosin heavy chain (MHC) IIB and low succinate dehydrogenase (SDH) expressing myofibers, without a change in the size of MHC IIA positive or high SDH myofibers. Cytochrome c oxidase activity was significantly reduced in extracts from red gastrocnemius muscle from Pus1−/− mice. Transmission electron microscopy on red gastrocnemius muscle demonstrated that Pus1−/− mice also had lower intermyofibrillar mitochondrial density and smaller mitochondria. Collectively, these results suggest that alterations in muscle metabolism related to mitochondrial content and oxidative capacity may account for the reduced exercise capacity in Pus1−/− mice.

Details

ISSN :
20452322
Volume :
6
Database :
OpenAIRE
Journal :
Scientific reports
Accession number :
edsair.doi.dedup.....1a73d225fbfb9aed9c11d421a129aace