Literature DB >> 15312652

Protein kinase G type II is required for night-to-day progression of the mammalian circadian clock.

Shelley A Tischkau1, Jennifer W Mitchell, Laura A Pace, Jessica W Barnes, Jeffrey A Barnes, Martha U Gillette.   

Abstract

Circadian clocks comprise a cyclic series of dynamic cellular states, characterized by the changing availability of substrates that alter clock time when activated. To determine whether circadian clocks, like the cell cycle, exhibit regulation by key phosphorylation events, we examined endogenous kinase regulation of timekeeping in the mammalian suprachiasmatic nucleus (SCN). Short-term inhibition of PKG-II but not PKG-Ibeta using antisense oligodeoxynucleotides delayed rhythms of electrical activity and Bmal1 mRNA. Phase resetting was rapid and dynamic; inhibition of PKG-II forced repetition of the last 3.5 hr of the cycle. Chronic inhibition of PKG-II disrupted electrical activity rhythms and tonically increased Bmal1 mRNA. PKG-II-like immunoreactivity was detected after coimmunoprecipitation with CLOCK, and CLOCK was phosphorylated in the presence of active PKG-II. PKG-II activation may define a critical control point for temporal progression into the daytime domain by acting on the positive arm of the transcriptional/translational feedback loop.

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Year:  2004        PMID: 15312652     DOI: 10.1016/j.neuron.2004.07.027

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   17.173


  21 in total

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Authors:  Martha U Gillette; Tongfei A Wang
Journal:  Antioxid Redox Signal       Date:  2014-02-10       Impact factor: 8.401

2.  Endogenous peptide discovery of the rat circadian clock: a focused study of the suprachiasmatic nucleus by ultrahigh performance tandem mass spectrometry.

Authors:  Ji Eun Lee; Norman Atkins; Nathan G Hatcher; Leonid Zamdborg; Martha U Gillette; Jonathan V Sweedler; Neil L Kelleher
Journal:  Mol Cell Proteomics       Date:  2009-11-10       Impact factor: 5.911

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4.  Molecular mechanism of the repressive phase of the mammalian circadian clock.

Authors:  Xuemei Cao; Yanyan Yang; Christopher P Selby; Zhenxing Liu; Aziz Sancar
Journal:  Proc Natl Acad Sci U S A       Date:  2020-12-21       Impact factor: 11.205

5.  Functional Peptidomics: Stimulus- and Time-of-Day-Specific Peptide Release in the Mammalian Circadian Clock.

Authors:  Norman Atkins; Shifang Ren; Nathan Hatcher; Penny W Burgoon; Jennifer W Mitchell; Jonathan V Sweedler; Martha U Gillette
Journal:  ACS Chem Neurosci       Date:  2018-06-20       Impact factor: 4.418

6.  Circadian integration of glutamatergic signals by little SAAS in novel suprachiasmatic circuits.

Authors:  Norman Atkins; Jennifer W Mitchell; Elena V Romanova; Daniel J Morgan; Tara P Cominski; Jennifer L Ecker; John E Pintar; Jonathan V Sweedler; Martha U Gillette
Journal:  PLoS One       Date:  2010-09-07       Impact factor: 3.240

7.  A serine cluster mediates BMAL1-dependent CLOCK phosphorylation and degradation.

Authors:  Mary L Spengler; Karen K Kuropatwinski; Molly Schumer; Marina P Antoch
Journal:  Cell Cycle       Date:  2009-12-08       Impact factor: 4.534

8.  Cyclin-dependent kinase 5 (Cdk5) regulates the function of CLOCK protein by direct phosphorylation.

Authors:  Yongdo Kwak; Jaehoon Jeong; Saebom Lee; Young-Un Park; Seol-Ae Lee; Dong-Hee Han; Joung-Hun Kim; Toshio Ohshima; Katsuhiko Mikoshiba; Yoo-Hun Suh; Sehyung Cho; Sang Ki Park
Journal:  J Biol Chem       Date:  2013-11-14       Impact factor: 5.157

Review 9.  Metabolism as an integral cog in the mammalian circadian clockwork.

Authors:  Karen L Gamble; Martin E Young
Journal:  Crit Rev Biochem Mol Biol       Date:  2013-04-17       Impact factor: 8.250

10.  Neuropeptidomics of the supraoptic rat nucleus.

Authors:  Adriana Bora; Suresh P Annangudi; Larry J Millet; Stanislav S Rubakhin; Andrew J Forbes; Neil L Kelleher; Martha U Gillette; Jonathan V Sweedler
Journal:  J Proteome Res       Date:  2008-09-25       Impact factor: 4.466

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