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Publication : A Novel Bmal1 Mutant Mouse Reveals Essential Roles of the C-Terminal Domain on Circadian Rhythms.

First Author  Park N Year  2015
Journal  PLoS One Volume  10
Issue  9 Pages  e0138661
PubMed ID  26394143 Mgi Jnum  J:243172
Mgi Id  MGI:5907802 Doi  10.1371/journal.pone.0138661
Citation  Park N, et al. (2015) A Novel Bmal1 Mutant Mouse Reveals Essential Roles of the C-Terminal Domain on Circadian Rhythms. PLoS One 10(9):e0138661
abstractText  The mammalian circadian clock is an endogenous biological timer comprised of transcriptional/translational feedback loops of clock genes. Bmal1 encodes an indispensable transcription factor for the generation of circadian rhythms. Here, we report a new circadian mutant mouse from gene-trapped embryonic stem cells harboring a C-terminus truncated Bmal1 (Bmal1GTDeltaC) allele. The homozygous mutant (Bmal1GTDeltaC/GTDeltaC) mice immediately lost circadian behavioral rhythms under constant darkness. The heterozygous (Bmal1+/GTDeltaC) mice displayed a gradual loss of rhythms, in contrast to Bmal1+/- mice where rhythms were sustained. Bmal1GTDeltaC/GTDeltaC mice also showed arrhythmic mRNA and protein expression in the SCN and liver. Lack of circadian reporter oscillation was also observed in cultured fibroblast cells, indicating that the arrhythmicity of Bmal1GTDeltaC/GTDeltaC mice resulted from impaired molecular clock machinery. Expression of clock genes exhibited distinct responses to the mutant allele in Bmal1+/GTDeltaC and Bmal1GTDeltaC/GTDeltaC mice. Despite normal cellular localization and heterodimerization with CLOCK, overexpressed BMAL1GTDeltaC was unable to activate transcription of Per1 promoter and BMAL1-dependent CLOCK degradation. These results indicate that the C-terminal region of Bmal1 has pivotal roles in the regulation of circadian rhythms and the Bmal1GTDeltaC mice constitute a novel model system to evaluate circadian functional mechanism of BMAL1.
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