The daily rhythm of mice
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Summary
The house mouse Mus musculus is not only perfectly suited to pinpoint the components of the mammalian circadian clock, but also to unravel metabolic, physiological, and pathological processes linked to the circadian timing system.
- Type
- review
- Published
- 2011-05-20
- Cited by
- 90
- References
- 129
- Access
- Open access
- OpenAlex
- https://openalex.org/W2002115446
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17764021
Keywords
Circadian rhythm, Clockwork, Circadian clock, Biology, Bacterial circadian rhythms
References
- Altered Patterns of Sleep and Behavioral Adaptability in NPAS2-Deficient Mice
- The orphan nuclear receptor RORα regulates circadian transcription of the mammalian core-clock Bmal1
- The Clock Genes Period 2 and Cryptochrome 2 Differentially Balance Bone Formation
- Molecular components of the Mammalian circadian clock.
- The mPer2 gene encodes a functional component of the mammalian circadian clock
- Gene expression: View of a mouse clock gene ticking
- Mammalian Cry1 and Cry2 are essential for maintenance of circadian rhythms
- NPAS2: An Analog of Clock Operative in the Mammalian Forebrain
- Disruption of the circadian clock due to the Clock mutation has discrete effects on aging and carcinogenesis
- Three transmembrane conformations and sequence-dependent displacement of the S4 domain in shaker K+ channel gating.
- CIRCADIAN CONTROL OF THE NAD+ SALVAGE PATHWAY BY CLOCK-SIRT1
- Time of Day-dependent Sorting of the Vesicular Glutamate Transporter to the Plasma Membrane*
- mCRY1 and mCRY2 are essential components of the negative limb of the circadian clock feedback loop.
- Lack of food anticipation in Per2 mutant mice.
- Functional consequences of a CKIδ mutation causing familial advanced sleep phase syndrome
- Cloning of mouse BMAL2 and its daily expression profile in the suprachiasmatic nucleus: a remarkable acceleration of Bmal2 sequence divergence after Bmal gene duplication.
- Rhythmic expression of ROR beta mRNA in the mice suprachiasmatic nucleus.
- REV-ERBα Participates in Circadian SREBP Signaling and Bile Acid Homeostasis
- Molecular bases for circadian clocks.
- SCFFbxl3 Controls the Oscillation of the Circadian Clock by Directing the Degradation of Cryptochrome Proteins
Cited by
- The circadian clock component PERIOD2: from molecular to cerebral functions.
- Transcriptional regulation in skeletal muscle of zebrafish in response to nutritional status, photoperiod and experimental selection for body size
- Daily rhythms of clock gene expression and feeding behavior during the larval development in gilthead seabream, Sparus aurata
- The hormonal and circadian basis for insect photoperiodic timing
- Cardiac Atrial Circadian Rhythms in PERIOD2::LUCIFERASE and per1:luc Mice: Amplitude and Phase Responses to Glucocorticoid Signaling and Medium Treatment
- Genetic redundancy strengthens the circadian clock leading to a narrow entrainment range
- Timing in plants – A rhythmic arrangement
- It's time to swim! Zebrafish and the circadian clock
- Phosphorylations: making the Neurospora crassa circadian clock tick
- Changes of physiological functions induced by shift work.
- Circadian expression of clock and putative clock-controlled genes in skeletal muscle of the zebrafish.
- Glucocorticoids Affect 24 h Clock Genes Expression in Human Adipose Tissue Explant Cultures
- Circadian Regulation of Food-Anticipatory Activity in Molecular Clock–Deficient Mice
- The orally active melanocortin-4 receptor antagonist BL-6020/979: a promising candidate for the treatment of cancer cachexia
- Day and night variations in the repair of ionizing-radiation-induced DNA damage in mouse splenocytes.
- Circadian rhythms and sleep—the metabolic connection
- Chronic subordination stress phase advances adrenal and anterior pituitary clock gene rhythms.
- Functional Development of the Circadian Clock in the Zebrafish Pineal Gland
- Effect of Network Architecture on Synchronization and Entrainment Properties of the Circadian Oscillations in the Suprachiasmatic Nucleus
- Circadian regulation of allergic reactions by the mast cell clock in mice.
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