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1. Cryptochrome proteins regulate the circadian intracellular behavior and localization of PER2 in mouse suprachiasmatic nucleus neurons

2. Early doors (Edo) mutant mouse reveals the importance of period 2 (PER2) PAS domain structure for circadian pacemaking

4. Mechanisms and physiological function of daily haemoglobin oxidation rhythms in red blood cells

11. Single-cell transcriptomics of suprachiasmatic nuclei reveal a Prokineticin-driven circadian network

19. Clock gene-independent daily regulation of haemoglobin oxidation in red blood cells

23. CRYPTOCHROMES confer robustness, not rhythmicity, to circadian timekeeping

25. Author Reply to Peer Reviews of CRYPTOCHROMES confer robustness, not rhythmicity, to circadian timekeeping

27. CRYPTOCHROMES confer robustness, not rhythmicity, to circadian timekeeping

28. Quantitative live imaging of Venus::BMAL1 in a mouse model reveals complex dynamics of the master circadian clock regulator

30. Insulin/IGF-1 Drives PERIOD Synthesis to Entrain Circadian Rhythms with Feeding Time

32. The Cell-Autonomous Clock of VIP Receptor VPAC2 Cells Regulates Period and Coherence of Circadian Behavior.

34. Circadian Factor BMAL1 in Histaminergic Neurons Regulates Sleep Architecture

36. Visualizing and Quantifying Intracellular Behavior and Abundance of the Core Circadian Clock Protein PERIOD2

37. The Regulatory Factor ZFHX3 Modifies Circadian Function in SCN via an AT Motif-Driven Axis

39. Disrupted Circadian Rhythms in a Mouse Model of Schizophrenia

43. Proteomic Analysis Reveals the Role of Synaptic Vesicle Cycling in Sustaining the Suprachiasmatic Circadian Clock

44. Setting Clock Speed in Mammals: The CK1ɛ tau Mutation in Mice Accelerates Circadian Pacemakers by Selectively Destabilizing PERIOD Proteins

46. Analysis of core circadian feedback ioop in suprachiasmatic nucleus of mCry1-Iuc transgenic reporter mouse.

47. Distinct and Separable Roles for Endogenous CRY1 and CRY2 within the Circadian Molecular Clockwork of the Suprachiasmatic Nucleus, as Revealed by the Fbxl3Afh Mutation.

48. Tuning the Period of the Mammalian Circadian Clock: Additive and Independent Effects of CK1ϵTau and Fbxl3Afh Mutations on Mouse Circadian Behavior and Molecular Pacemaking.

49. Entrainment of disrupted circadian behavior through inhibition of casein kinase 1 (CK1) enzymes.

50. Circadian Factor BMAL1 in Histaminergic Neurons Regulates Sleep Architecture

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