Genetic suppression of the circadian Clock mutation by the melatonin biosynthesis pathway

Most laboratory mouse strains including C57BL/6J do not produce detectable levels of pineal melatonin owing to deficits in enzymatic activity of arylalkylamine N-acetyltransferase (AANAT) and N-acetylserotonin O-methyl transferase (ASMT), two enzymes necessary for melatonin biosynthesis. Here we rep...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2010-05, Vol.107 (18), p.8399-8403
Hauptverfasser: Shimomura, Kazuhiro, Lowrey, Phillip L., Vitaterna, Martha Hotz, Buhr, Ethan D., Kumar, Vivek, Hanna, Peter, Omura, Chiaki, Izumo, Mariko, Low, Sharon S., Barrett, R. Keith, LaRue, Silvia I., Green, Carla B., Takahashi, Joseph S.
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Sprache:eng
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Zusammenfassung:Most laboratory mouse strains including C57BL/6J do not produce detectable levels of pineal melatonin owing to deficits in enzymatic activity of arylalkylamine N-acetyltransferase (AANAT) and N-acetylserotonin O-methyl transferase (ASMT), two enzymes necessary for melatonin biosynthesis. Here we report that alleles segregating at these two loci in C3H/Hej mice, an inbred strain producing melatonin, suppress the circadian period-lengthening effect of the Clock mutation. Through a functional mapping approach, we localize mouse Asmt to chromosome X and show that it, and the Aanat locus on chromosome 11, are significantly associated with pineal melatonin levels. Treatment of suprachiasmatic nucleus (SCN) explant cultures from Period2 Luciferase (Per2 Luc ) Clock/+ reporter mice with melatonin, or the melatonin agonist, ramelteon, phenocopies the genetic suppression of the Clock mutant phenotype observed in living animals. These results demonstrate that melatonin suppresses the Clock/+ mutant phenotype and interacts with Clock to affect the mammalian circadian system.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1004368107