Markovian State Models uncover Casein Kinase 1 dynamics that govern circadian period.
Publication
, Preprint
Ricci, CG; Philpott, JM; Torgrimson, MR; Freeberg, AM; Narasimamurthy, R; de Barros, EP; Amaro, R; Virshup, DM; McCammon, JA; Partch, CL
January 22, 2025
Duke Scholars
Citation
APA
Chicago
ICMJE
MLA
NLM
Ricci, C. G., Philpott, J. M., Torgrimson, M. R., Freeberg, A. M., Narasimamurthy, R., de Barros, E. P., … Partch, C. L. (2025). Markovian State Models uncover Casein Kinase 1 dynamics that govern circadian period. https://doi.org/10.1101/2025.01.17.633651
Ricci, Clarisse Gravina, Jonathan M. Philpott, Megan R. Torgrimson, Alfred M. Freeberg, Rajesh Narasimamurthy, Emilia Pécora de Barros, Rommie Amaro, David M. Virshup, J Andrew McCammon, and Carrie L. Partch. “Markovian State Models uncover Casein Kinase 1 dynamics that govern circadian period.,” January 22, 2025. https://doi.org/10.1101/2025.01.17.633651.
Ricci CG, Philpott JM, Torgrimson MR, Freeberg AM, Narasimamurthy R, de Barros EP, et al. Markovian State Models uncover Casein Kinase 1 dynamics that govern circadian period. 2025.
Ricci, Clarisse Gravina, et al. Markovian State Models uncover Casein Kinase 1 dynamics that govern circadian period. 22 Jan. 2025. Pubmed, doi:10.1101/2025.01.17.633651.
Ricci CG, Philpott JM, Torgrimson MR, Freeberg AM, Narasimamurthy R, de Barros EP, Amaro R, Virshup DM, McCammon JA, Partch CL. Markovian State Models uncover Casein Kinase 1 dynamics that govern circadian period. 2025.