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Alterations in the carnitine cycle in a mouse model of Rett syndrome

Academic Article
Publication Date:
2017
abstract:
Rett syndrome (RTT) is a neurodevelopmental disease that leads to intellectual deficit, motor disability, epilepsy and increased risk of sudden death. Although in up to 95% of cases this disease is caused by de novo loss-of-function mutations in the X-linked methyl-CpG binding protein 2 gene, it is a multisystem disease associated also with mitochondrial metabolic imbalance. In addition, the presence of long QT intervals (LQT) on the patients' electrocardiograms has been associated with the development of ventricular tachyarrhythmias and sudden death. In the attempt to shed light on the mechanism underlying heart failure in RTT, we investigated the contribution of the carnitine cycle to the onset of mitochondrial dysfunction in the cardiac tissues of two subgroups of RTT mice, namely Mecp2(+/-) NQTc and Mecp2(+/-) LQTc mice, that have a normal and an LQT interval, respectively. We found that carnitine palmitoyltransferase 1 A/B and carnitine acylcarnitine translocase were significantly upregulated at mRNA and protein level in the heart of Mecp2(+/-) mice. Moreover, the carnitine system was imbalanced in Mecp2(+/-) LQTc mice due to decreased carnitine acylcarnitine transferase expression. By causing accumulation of intramitochondrial acylcarnitines, this imbalance exacerbated incomplete fatty acid oxidation, which, in turn, could contribute to mitochondrial overload and sudden death.
Iris type:
01.01 Articolo in rivista
Keywords:
carnitine cycle; Rett Syndrome; mitochondrial dysfunction
List of contributors:
Mucerino, Sabrina; Margarucci, Sabrina; DI SALLE, Anna; Peluso, Gianfranco
Authors of the University:
DI SALLE ANNA
MARGARUCCI SABRINA
Handle:
https://iris.cnr.it/handle/20.500.14243/333718
Published in:
SCIENTIFIC REPORTS
Journal
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