[HTML][HTML] Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner, M Brunner… - Scientific reports, 2020 - nature.com
Abstract Theory predicts that self-sustained oscillations require robust delays and
nonlinearities (ultrasensitivity). Delayed negative feedback loops with switch-like inhibition …

Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner… - Scientific …, 2020 - refubium.fu-berlin.de
Theory predicts that self-sustained oscillations require robust delays and nonlinearities
(ultrasensitivity). Delayed negative feedback loops with switch-like inhibition of transcription …

[PDF][PDF] Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner… - Scientific …, 2020 - researchgate.net
Results Linear processive phosphorylations provides delays. As discussed above, PER2
and FRQ are core clock phosphoproteins with up to 100 phosphorylation sites 28, 53 …

Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner, M Brunner… - Scientific Reports, 2020 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Theory predicts that self-sustained oscillations
require robust delays and nonlinearities (ultrasensitivity). Delayed negative feedback loops …

Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner, M Brunner… - 2020 - katalog.ub.uni-heidelberg.de
Theory predicts that self-sustained oscillations require robust delays and nonlinearities
(ultrasensitivity). Delayed negative feedback loops with switch-like inhibition of transcription …

Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner… - Scientific …, 2020 - ui.adsabs.harvard.edu
Abstract Theory predicts that self-sustained oscillations require robust delays and
nonlinearities (ultrasensitivity). Delayed negative feedback loops with switch-like inhibition …

[PDF][PDF] Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner, M Brunner… - scholar.archive.org
1 Theory predicts that self-sustained oscillations require robust delays and nonlinearities
(ultrasensitivity). 2 Delayed negative feedback loops with switch-like inhibition of …

[HTML][HTML] Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner… - Scientific …, 2020 - ncbi.nlm.nih.gov
Abstract Theory predicts that self-sustained oscillations require robust delays and
nonlinearities (ultrasensitivity). Delayed negative feedback loops with switch-like inhibition …

Multiple random phosphorylations in clock proteins provide long delays and switches.

A Upadhyay, D Marzoll, A Diernfellner, M Brunner… - Scientific …, 2020 - europepmc.org
Abstract Theory predicts that self-sustained oscillations require robust delays and
nonlinearities (ultrasensitivity). Delayed negative feedback loops with switch-like inhibition …

Multiple random phosphorylations in clock proteins provide long delays and switches

A Upadhyay, D Marzoll, A Diernfellner… - Scientific …, 2020 - pubmed.ncbi.nlm.nih.gov
Theory predicts that self-sustained oscillations require robust delays and nonlinearities
(ultrasensitivity). Delayed negative feedback loops with switch-like inhibition of transcription …