Clock Genes Control Cortical Critical Period Timing
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Summary
It is shown that circadian clock genes control the onset of critical period plasticity in the neocortex of Clock-deficient mice, and unique downstream gene sets controlling synaptic events and cellular homeostasis for proper maturation and maintenance were found to be regulated by CLOCK specifically within PV-cells.
- Type
- article
- Published
- 2015-03-19
- Cited by
- 105
- References
- 78
- Access
- Open access
- OpenAlex
- https://openalex.org/W25801703
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:10059098
Keywords
Philosophy
References
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Cited by
- Experience‐dependent transcriptional regulation in juvenile brain development
- Seeing Anew through Interneuron Transplantation.
- Seeing the forest and trees: whole‐body and whole‐brain imaging for circadian biology
- Cortical plasticity: A critical role for Clock
- Targeting Oxidative Stress and Aberrant Critical Period Plasticity in the Developmental Trajectory to Schizophrenia.
- Circadian Mechanisms Underlying Reward-Related Neurophysiology and Synaptic Plasticity
- A Stochastic Burst Follows the Periodic Morning Peak in Individual Drosophila Locomotion
- Circadian Clock Regulated Gene Expression in the Hypothalamus
- Modulation of learning and memory by the targeted deletion of the circadian clock gene Bmal1 in forebrain circuits
- The Risk of Sleep Disorder Among Persons with Mild Traumatic Brain Injury
- Circadian Regulation of Synaptic Plasticity
- Reconnecting Eye to Brain
- Genetic Otx2 mis-localization delays critical period plasticity across brain regions
- Failure to reproduce period-dependent song cycles in Drosophila is due to poor automated pulse-detection and low-intensity courtship
- Extra-hypothalamic brain clocks in songbirds: Photoperiodic state dependent clock gene oscillations in night-migratory blackheaded buntings, Emberiza melanocephala.
- Myrf ER-bound transcription factors drive C. elegans synaptic plasticity via cleavage-dependent nuclear translocation
- Clock Genes and Altered Sleep–Wake Rhythms: Their Role in the Development of Psychiatric Disorders
- Genome-Wide Target Analyses of Otx2 Homeoprotein in Postnatal Cortex
- Mir-132/212 is required for maturation of binocular matching of orientation preference and depth perception
- Developmental dynamics of cross-modality in mouse visual cortex
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