AbstractBy incubating the mixture of three cyanobacterial proteins, KaiA, KaiB, and KaiC, with ATP in vitro, T. Kondo and his colleagues in recent work reconstituted the robust circadian rhythm of the phosphorylation level of KaiC. This finding indicates that protein-protein interactions and the associated hydrolysis of ATP suffice to generate the circadian rhythm. Several theoretical models have been proposed to explain the rhythm generated in this “protein-only” system, but the clear criterion to discern different possible mechanisms was not known. In this article, we discuss a model based on two basic assumptions: the assumption of the allosteric transition of a KaiC hexamer and the assumption of the monomer exchange between KaiC hexamer...
<div><p>The principal pacemaker of the circadian clock of the cyanobacterium <i>S. elongatus</i> is ...
Oscillatory dynamics is ubiquitous in biology, yet the complexity of the underlying signaling pathwa...
The cyanobacterial circadian clock oscillator is composed of three clock proteins—KaiA, KaiB, and Ka...
AbstractBy incubating the mixture of three cyanobacterial proteins, KaiA, KaiB, and KaiC, with ATP i...
AbstractIn recent experimental reports, robust circadian oscillation of the phosphorylation level of...
AbstractIn recent experimental reports, robust circadian oscillation of the phosphorylation level of...
AbstractBiochemical circadian oscillation of KaiC phosphorylation, by mixing three Kai proteins and ...
Circadian KaiC phosphorylation in cyanobacteria reconstituted in vitro recently initiates a series o...
An oscillator consisting of KaiA, KaiB, and KaiC proteins comprises the core of cyanobacterial circa...
<div><p>An oscillator consisting of KaiA, KaiB, and KaiC proteins comprises the core of cyanobacteri...
An oscillator consisting of KaiA, KaiB, and KaiC proteins comprises the core of cyanobacterial circa...
How do many constituent molecules in a biochemical system synchronize, giving rise to coherent syste...
Circadian rhythms in living organisms have long been attributed solely to a transcription-translatio...
The principal pacemaker of the circadian clock of the cyanobacterium S. elongatus is a protein phosp...
AbstractBiochemical circadian oscillation of KaiC phosphorylation, by mixing three Kai proteins and ...
<div><p>The principal pacemaker of the circadian clock of the cyanobacterium <i>S. elongatus</i> is ...
Oscillatory dynamics is ubiquitous in biology, yet the complexity of the underlying signaling pathwa...
The cyanobacterial circadian clock oscillator is composed of three clock proteins—KaiA, KaiB, and Ka...
AbstractBy incubating the mixture of three cyanobacterial proteins, KaiA, KaiB, and KaiC, with ATP i...
AbstractIn recent experimental reports, robust circadian oscillation of the phosphorylation level of...
AbstractIn recent experimental reports, robust circadian oscillation of the phosphorylation level of...
AbstractBiochemical circadian oscillation of KaiC phosphorylation, by mixing three Kai proteins and ...
Circadian KaiC phosphorylation in cyanobacteria reconstituted in vitro recently initiates a series o...
An oscillator consisting of KaiA, KaiB, and KaiC proteins comprises the core of cyanobacterial circa...
<div><p>An oscillator consisting of KaiA, KaiB, and KaiC proteins comprises the core of cyanobacteri...
An oscillator consisting of KaiA, KaiB, and KaiC proteins comprises the core of cyanobacterial circa...
How do many constituent molecules in a biochemical system synchronize, giving rise to coherent syste...
Circadian rhythms in living organisms have long been attributed solely to a transcription-translatio...
The principal pacemaker of the circadian clock of the cyanobacterium S. elongatus is a protein phosp...
AbstractBiochemical circadian oscillation of KaiC phosphorylation, by mixing three Kai proteins and ...
<div><p>The principal pacemaker of the circadian clock of the cyanobacterium <i>S. elongatus</i> is ...
Oscillatory dynamics is ubiquitous in biology, yet the complexity of the underlying signaling pathwa...
The cyanobacterial circadian clock oscillator is composed of three clock proteins—KaiA, KaiB, and Ka...