A Phosphodiesterase 2A Isoform Localized to Mitochondria Regulates Respiration

Mitochondria are central organelles in cellular energy metabolism, apoptosis, and aging processes. A signaling network regulating these functions was recently shown to include soluble adenylyl cyclase as a local source of the second messenger cAMP in the mitochondrial matrix. However, a mitochondria...

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Veröffentlicht in:The Journal of biological chemistry 2011-09, Vol.286 (35), p.30423-30432
Hauptverfasser: Acin-Perez, Rebeca, Russwurm, Michael, Günnewig, Kathrin, Gertz, Melanie, Zoidl, Georg, Ramos, Lavoisier, Buck, Jochen, Levin, Lonny R., Rassow, Joachim, Manfredi, Giovanni, Steegborn, Clemens
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Sprache:eng
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Zusammenfassung:Mitochondria are central organelles in cellular energy metabolism, apoptosis, and aging processes. A signaling network regulating these functions was recently shown to include soluble adenylyl cyclase as a local source of the second messenger cAMP in the mitochondrial matrix. However, a mitochondrial cAMP-degrading phosphodiesterase (PDE) necessary for switching off this cAMP signal has not yet been identified. Here, we describe the identification and characterization of a PDE2A isoform in mitochondria from rodent liver and brain. We find that mitochondrial PDE2A is located in the matrix and that the unique N terminus of PDE2A isoform 2 specifically leads to mitochondrial localization of this isoform. Functional assays show that mitochondrial PDE2A forms a local signaling system with soluble adenylyl cyclase in the matrix, which regulates the activity of the respiratory chain. Our findings complete a cAMP signaling cascade in mitochondria and have implications for understanding the regulation of mitochondrial processes and for their pharmacological modulation.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M111.266379