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Coordinate induction of AMP deaminase in human atrium with mitochondrial DNA deletion
Authors:Tomikura Yoko  Hisatome Ichiro  Tsuboi Mariko  Yamawaki Masahiro  Shimoyama Masaki  Yamamoto Yasutaka  Sasaki Norihito  Ogino Kazuhide  Igawa Osamu  Shigemasa Chiaki  Ishiguro Shingo  Ohgi Shigetsugu  Nanba Eiji  Shiota Goshi  Morisaki Hiroko  Morisaki Takayuki  Kitakaze Masafumi
Affiliation:Department of Cardiovascular Medicine, Faculty of Medicine, Tottori University, Yonago, Japan.
Abstract:Despite the heteroplasmic lower population of mitochondrial (mt) DNA deletion, mtDNA deletion is significantly related to the loss of atrial adenine nucleotides. To elucidate its mechanism, we examined the frequency of a 7.4-kb mtDNA deletion, the concentration of adenine nucleotides, and the activity of AMP catabolic enzymes in 10 human right atria obtained from cardiac surgery, using quantitative PCR, HPLC, and immunoprecipitations. The atrial concentrations of ATP, ADP, AMP, and the total adenine nucleotides were significantly lower in patients with deletion than those in patients without deletion, despite the lower frequency of their deletion. The activities of total AMP deaminase (AMPD), liver-type (AMPD 2), and heart-type isoform (AMPD 3) were significantly higher in patients with deletion than in patients without deletion, although there was no significant difference in the cytosolic 5(')-nucleotidase among them. In conclusion, mtDNA deletion coordinately induces AMP deaminase to contribute to the loss of atrial adenine nucleotides through degrading AMP excessively.
Keywords:Mitochondrial DNA deletion   AMP deaminase   5-Nucleotidase   Adenine nucleotides   Purine nucleotide cycles
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