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Evidence for ACTN3 as a genetic modifier of Duchenne muscular dystrophy.

Nature communications (2017-02-01)
Marshall W Hogarth, Peter J Houweling, Kristen C Thomas, Heather Gordish-Dressman, Luca Bello, Elena Pegoraro, Eric P Hoffman, Stewart I Head, Kathryn N North
ZUSAMMENFASSUNG

Duchenne muscular dystrophy (DMD) is characterized by muscle degeneration and progressive weakness. There is considerable inter-patient variability in disease onset and progression, which can confound the results of clinical trials. Here we show that a common null polymorphism (R577X) in ACTN3 results in significantly reduced muscle strength and a longer 10 m walk test time in young, ambulant patients with DMD; both of which are primary outcome measures in clinical trials. We have developed a double knockout mouse model, which also shows reduced muscle strength, but is protected from stretch-induced eccentric damage with age. This suggests that α-actinin-3 deficiency reduces muscle performance at baseline, but ameliorates the progression of dystrophic pathology. Mechanistically, we show that α-actinin-3 deficiency triggers an increase in oxidative muscle metabolism through activation of calcineurin, which likely confers the protective effect. Our studies suggest that ACTN3 R577X genotype is a modifier of clinical phenotype in DMD patients.

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Collagenase aus Clostridium histolyticum, suitable for release of physiologically active rat hepatocytes, Type IV, 0.5-5.0 FALGPA units/mg solid, ≥125 CDU/mg solid
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Harris-Hämatoxylin-Lösung, modifiziert
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Eosin-Y-Lösung, wässrig
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Anti-PGC-1-Antikörper, Chemicon®, from rabbit
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Anti-DSCR1 (C-terminal) antibody produced in rabbit, ~1.5 mg/mL, affinity isolated antibody, buffered aqueous solution