Science 2015-01-30

Circadian rhythms. Decoupling circadian clock protein turnover from circadian period determination.

Luis F Larrondo, Consuelo Olivares-Yañez, Christopher L Baker, Jennifer J Loros, Jay C Dunlap

Index: Science 347(6221) , 1257277, (2015)

Full Text: HTML

Abstract

The mechanistic basis of eukaryotic circadian oscillators in model systems as diverse as Neurospora, Drosophila, and mammalian cells is thought to be a transcription-and-translation-based negative feedback loop, wherein progressive and controlled phosphorylation of one or more negative elements ultimately elicits their own proteasome-mediated degradation, thereby releasing negative feedback and determining circadian period length. The Neurospora crassa circadian negative element FREQUENCY (FRQ) exemplifies such proteins; it is progressively phosphorylated at more than 100 sites, and strains bearing alleles of frq with anomalous phosphorylation display abnormal stability of FRQ that is well correlated with altered periods or apparent arrhythmicity. Unexpectedly, we unveiled normal circadian oscillations that reflect the allelic state of frq but that persist in the absence of typical degradation of FRQ. This manifest uncoupling of negative element turnover from circadian period length determination is not consistent with the consensus eukaryotic circadian model. Copyright © 2015, American Association for the Advancement of Science.


Related Compounds

Related Articles:

Multifactorial analysis of conditional reprogramming of human keratinocytes.

2015-01-01

[PLoS ONE 10(2) , e0116755, (2015)]

Vegetables' juice influences polyol pathway by multiple mechanisms in favour of reducing development of oxidative stress and resultant diabetic complications.

2014-04-01

[Pharmacogn. Mag. 10(Suppl 2) , S383-91, (2014)]

Dynamic switching of active promoter and enhancer domains regulates Tet1 and Tet2 expression during cell state transitions between pluripotency and differentiation.

2015-03-01

[Mol. Cell. Biol. 35(6) , 1026-42, (2015)]

Monitoring F1651 P-like fimbria expression at the single-cell level reveals a highly heterogeneous phenotype.

2015-05-01

[Infect. Immun. 83(5) , 1929-39, (2015)]

Perturbation of the monomer-monomer interfaces of the benzoylformate decarboxylase tetramer.

2014-07-15

[Biochemistry 53(27) , 4358-67, (2014)]

More Articles...