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Molecular basis of arrhythmic substrate in ageing murine peroxisome proliferator-activated receptor γ co-activator deficient hearts modelling mitochondrial dysfunction.

Biosci Rep. 2019 Dec 20;39(12)
Charlotte E Edling 1 , Ibrahim T Fazmin 2 , Khalil Saadeh 2 , Karan R Chadda 2 , Shiraz Ahmad 2 , Haseeb Valli 2 , Christopher L-H Huang 3 , Kamalan Jeevaratnam 3
Charlotte E Edling 1 , Ibrahim T Fazmin 2 , Khalil Saadeh 2 , Karan R Chadda 2 , Shiraz Ahmad 2 , Haseeb Valli 2 , Christopher L-H Huang 3 , Kamalan Jeevaratnam 3
+ et al

[No authors listed]

Author information
  • 1 Faculty of Health and Medical Sciences, University of Surrey, Guildford GU2 7AL, United Kingdom.
  • 2 Physiological Laboratory, University of Cambridge, Downing Street, Cambridge CB2 3EG, United Kingdom.
  • 3 Department of Biochemistry, Hopkins Building, University of Cambridge, Cambridge CB2 1QW, United Kingdom.

摘要


INTRODUCTION:Ageing and chronic metabolic disorders are associated with mitochondrial dysfunction and cardiac pro-arrhythmic phenotypes which were recently attributed to slowed atrial and ventricular action potential (AP) conduction in peroxisome proliferator-activated receptor γ co-activator deficient (Pgc-1β-/-) mice. METHODS:We compared expression levels of voltage-gated Na+ channel (NaV1.5) and gap junction channels, Connexins 40 and 43 (Cx40 and Cx43) in the hearts of young and old, and wild-type (WT) and Pgc-1β-/- mice. This employed Western blotting (WB) for NaV1.5, Cx40 and Cx43 in atrial/ventricular tissue lysates, and immunofluorescence (IF) from Cx43 was explored in tissue sections. Results were analysed using two-way analysis of variance (ANOVA) for independent/interacting effects of age and genotype. RESULTS:In atria, increased age and Pgc-1β-/- genotype each independently decreased both Cx40 and Cx43 expression without interacting effects. In IF experiments, both age and Pgc-1β deletion independently reduced Cx43 expression. In ventricles, age and genotype exerted interacting effects in WB studies of NaV1.5 expression. Young Pgc-1β-/- then showed greater NaV1.5 expression than young WT ventricles. However, neither age nor Pgc-1β deletion affected Cx43 expression, independently or through interacting effects in both WB and IF studies. CONCLUSION:Similar pro-arrhythmic atrial/ventricular phenotypes arise in aged/Pgc-1β-/- from differing contributions of altered protein expression and functional effects that may arise from multiple acute mechanisms.

KEYWORDS: cardiac arrhythmia, connexins, voltage-gated channels