Yang Y, Xu T, Zhang Y, Qin X (February 2017). "Molecular basis for the regulation of the circadian clock kinases CK1δ and CK1ε". Cellular Signalling. 31: 58–65. doi:10.1016/j.cellsig.2016.12.010. PMID28057520.
Meijer JH, Michel S, Vanderleest HT, Rohling JH (December 2010). "Daily and seasonal adaptation of the circadian clock requires plasticity of the SCN neuronal network". The European Journal of Neuroscience. 32 (12): 2143–51. doi:10.1111/j.1460-9568.2010.07522.x. PMID21143668. S2CID12754517.
Harms E, Young MW, Saez L (2003). "CK1 and GSK3 in the Drosophila and Mammalian Circadian Clock". Molecular Clocks and Light Signalling. Novartis Foundation Symposia. Vol. 253. pp. 267–77, discussion 102–9, 277–84. doi:10.1002/0470090839.ch19. ISBN978-0-470-85283-5. PMID14712927. {{cite book}}: |journal= ignored (help)
Knippschild U, Gocht A, Wolff S, Huber N, Löhler J, Stöter M (June 2005). "The casein kinase 1 family: participation in multiple cellular processes in eukaryotes". Cellular Signalling. 17 (6): 675–89. doi:10.1016/j.cellsig.2004.12.011. PMID15722192.
Knippschild U, Milne DM, Campbell LE, DeMaggio AJ, Christenson E, Hoekstra MF, et al. (October 1997). "p53 is phosphorylated in vitro and in vivo by the delta and epsilon isoforms of casein kinase 1 and enhances the level of casein kinase 1 delta in response to topoisomerase-directed drugs". Oncogene. 15 (14): 1727–36. doi:10.1038/sj.onc.1201541. PMID9349507. S2CID13476342.
Yang Y, Xu T, Zhang Y, Qin X (February 2017). "Molecular basis for the regulation of the circadian clock kinases CK1δ and CK1ε". Cellular Signalling. 31: 58–65. doi:10.1016/j.cellsig.2016.12.010. PMID28057520.
Meijer JH, Michel S, Vanderleest HT, Rohling JH (December 2010). "Daily and seasonal adaptation of the circadian clock requires plasticity of the SCN neuronal network". The European Journal of Neuroscience. 32 (12): 2143–51. doi:10.1111/j.1460-9568.2010.07522.x. PMID21143668. S2CID12754517.
Harms E, Young MW, Saez L (2003). "CK1 and GSK3 in the Drosophila and Mammalian Circadian Clock". Molecular Clocks and Light Signalling. Novartis Foundation Symposia. Vol. 253. pp. 267–77, discussion 102–9, 277–84. doi:10.1002/0470090839.ch19. ISBN978-0-470-85283-5. PMID14712927. {{cite book}}: |journal= ignored (help)
Knippschild U, Gocht A, Wolff S, Huber N, Löhler J, Stöter M (June 2005). "The casein kinase 1 family: participation in multiple cellular processes in eukaryotes". Cellular Signalling. 17 (6): 675–89. doi:10.1016/j.cellsig.2004.12.011. PMID15722192.
Knippschild U, Milne DM, Campbell LE, DeMaggio AJ, Christenson E, Hoekstra MF, et al. (October 1997). "p53 is phosphorylated in vitro and in vivo by the delta and epsilon isoforms of casein kinase 1 and enhances the level of casein kinase 1 delta in response to topoisomerase-directed drugs". Oncogene. 15 (14): 1727–36. doi:10.1038/sj.onc.1201541. PMID9349507. S2CID13476342.
Meijer JH, Michel S, Vanderleest HT, Rohling JH (December 2010). "Daily and seasonal adaptation of the circadian clock requires plasticity of the SCN neuronal network". The European Journal of Neuroscience. 32 (12): 2143–51. doi:10.1111/j.1460-9568.2010.07522.x. PMID21143668. S2CID12754517.
Knippschild U, Milne DM, Campbell LE, DeMaggio AJ, Christenson E, Hoekstra MF, et al. (October 1997). "p53 is phosphorylated in vitro and in vivo by the delta and epsilon isoforms of casein kinase 1 and enhances the level of casein kinase 1 delta in response to topoisomerase-directed drugs". Oncogene. 15 (14): 1727–36. doi:10.1038/sj.onc.1201541. PMID9349507. S2CID13476342.
Badura L, Swanson T, Adamowicz W, Adams J, Cianfrogna J, Fisher K, et al. (August 2007). "An inhibitor of casein kinase I epsilon induces phase delays in circadian rhythms under free-running and entrained conditions". The Journal of Pharmacology and Experimental Therapeutics. 322 (2): 730–8. doi:10.1124/jpet.107.122846. PMID17502429. S2CID85875627.