John S. O'Neill

Affiliations: 
Cell Biology MRC Laboratory of Molecular Biology, Cambridge, England, United Kingdom 
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"John O'Neill"
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Stangherlin A, Seinkmane E, O'Neill JS. (2021) Understanding circadian regulation of mammalian cell function, protein homeostasis, and metabolism. Current Opinion in Systems Biology. 28: None
Wong DCS, Seinkmane E, Zeng A, et al. (2021) CRYPTOCHROMES promote daily protein homeostasis. The Embo Journal. e2021108883
Stangherlin A, Watson JL, Wong DCS, et al. (2021) Compensatory ion transport buffers daily protein rhythms to regulate osmotic balance and cellular physiology. Nature Communications. 12: 6035
Kay H, Grünewald E, Feord HK, et al. (2021) Deep-coverage spatiotemporal proteome of the picoeukaryote Ostreococcus tauri reveals differential effects of environmental and endogenous 24-hour rhythms. Communications Biology. 4: 1147
Ralph MR, Shi SQ, Johnson CH, et al. (2021) Targeted modification of the Per2 clock gene alters circadian function in mPer2luciferase (mPer2Luc) mice. Plos Computational Biology. 17: e1008987
Putker M, Wong DCS, Seinkmane E, et al. (2021) CRYPTOCHROMES confer robustness, not rhythmicity, to circadian timekeeping. The Embo Journal. e106745
Crosby P, Hamnett R, Putker M, et al. (2019) Insulin/IGF-1 Drives PERIOD Synthesis to Entrain Circadian Rhythms with Feeding Time. Cell. 177: 896-909.e20
Beale AD, Kruchek E, Kitcatt SJ, et al. (2019) Casein Kinase 1 Underlies Temperature Compensation of Circadian Rhythms in Human Red Blood Cells. Journal of Biological Rhythms. 748730419836370
Wong DC, O'Neill JS. (2018) Non-transcriptional processes in circadian rhythm generation. Current Opinion in Physiology. 5: 117-132
Crosby P, Hoyle NP, O'Neill JS. (2017) Flexible Measurement of Bioluminescent Reporters Using an Automated Longitudinal Luciferase Imaging Gas- and Temperature-optimized Recorder (ALLIGATOR). Journal of Visualized Experiments : Jove
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