Protein phosphorylation plays an essential role in the generation of circadian rhythms, regulating the stability, activity, and subcellular localization of certain proteins that constitute the biological clock. This study examines the role of the protein kinase Doubletime (DBT), a Drosophila ortholog of human casein kinase I (CKI)e/d. An enzymatically active DBT protein is shown to directly phosphorylate the Drosophila clock protein Period (PER). DBT-dependent phosphorylation sites are identified within PER, and their functional significance is assessed in a cultured cell system and in vivo. The perS mutation, which is associated with short-period (19-h) circadian rhythms, alters a key phosphorylation target within PER. Inspection of this a...
SummaryThe kinase DOUBLETIME is a master regulator of the Drosophila circadian clock, yet the mechan...
SummaryThe speed of circadian clocks in animals is tightly linked to complex phosphorylation program...
AbstractWe have isolated three alleles of a novel Drosophila clock gene, double-time (dbt). Short- (...
Protein phosphorylation plays an essential role in the generation of circadian rhythms, regulating t...
AbstractThe cloning of double-time (dbt) is reported. DOUBLETIME protein (DBT) is most closely relat...
AbstractCircadian (24 hour) PERIOD (PER) protein oscillation is dependent on the double-time (dbt) g...
The main components regulating the pace of circadian (≅24 h) clocks in animals are PERIOD (PER) prot...
AbstractThe clock gene double-time (dbt) encodes an ortholog of casein kinase Iϵ that promotes phosp...
Reversible phosphorylation of clock proteins plays an important role in circadian timekeeping as it ...
The animal circadian timing system interprets environmental time cues and internal metabolic status ...
Casein kinase 1, known as DOUBLETIME (DBT) inDrosophila melanogaster, is a critical component of the...
Circadian rhythms in Drosophila rely on cyclic regulation of the period (per) and timeless (tim) clo...
Drosophila Double-time (DBT) phosphorylates the circadian protein Period (PER). The period-altering ...
Circadian rhythms in Drosophila require cycling of the protein products of two major clock genes per...
Circadian clocks orchestrate daily rhythms in organismal physiology and behavior to promote optimal ...
SummaryThe kinase DOUBLETIME is a master regulator of the Drosophila circadian clock, yet the mechan...
SummaryThe speed of circadian clocks in animals is tightly linked to complex phosphorylation program...
AbstractWe have isolated three alleles of a novel Drosophila clock gene, double-time (dbt). Short- (...
Protein phosphorylation plays an essential role in the generation of circadian rhythms, regulating t...
AbstractThe cloning of double-time (dbt) is reported. DOUBLETIME protein (DBT) is most closely relat...
AbstractCircadian (24 hour) PERIOD (PER) protein oscillation is dependent on the double-time (dbt) g...
The main components regulating the pace of circadian (≅24 h) clocks in animals are PERIOD (PER) prot...
AbstractThe clock gene double-time (dbt) encodes an ortholog of casein kinase Iϵ that promotes phosp...
Reversible phosphorylation of clock proteins plays an important role in circadian timekeeping as it ...
The animal circadian timing system interprets environmental time cues and internal metabolic status ...
Casein kinase 1, known as DOUBLETIME (DBT) inDrosophila melanogaster, is a critical component of the...
Circadian rhythms in Drosophila rely on cyclic regulation of the period (per) and timeless (tim) clo...
Drosophila Double-time (DBT) phosphorylates the circadian protein Period (PER). The period-altering ...
Circadian rhythms in Drosophila require cycling of the protein products of two major clock genes per...
Circadian clocks orchestrate daily rhythms in organismal physiology and behavior to promote optimal ...
SummaryThe kinase DOUBLETIME is a master regulator of the Drosophila circadian clock, yet the mechan...
SummaryThe speed of circadian clocks in animals is tightly linked to complex phosphorylation program...
AbstractWe have isolated three alleles of a novel Drosophila clock gene, double-time (dbt). Short- (...