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Cancer Research|October 17, 2020
The Functional Landscape of Patient-Derived RNF43 Mutations Predicts Sensitivity to Wnt InhibitionJia Yu, Permeen A Mohamed Yusoff, Daniëlle T J Woutersen, et al.
Cancer Research|November 20, 2002
Regulation of BRCA1 phosphorylation by interaction with protein phosphatase 1alphaYing Liu, David M Virshup, Raymond L White, et al.
Biochemical Pharmacology|May 19, 2021
Unearthing the Janus-face cholesterogenesis pathways in cancerBabita Madan, David M Virshup, W David Nes, et al.
RNA (New York, N.Y.)|September 12, 2019
Broad regulation of gene isoform expression by Wnt signaling in cancerMuhammad Idris, Nathan Harmston, Enrico Petretto, et al.
The Journal of Biological Chemistry|March 5, 2002
The circadian regulatory proteins BMAL1 and cryptochromes are substrates of casein kinase IepsilonErik J Eide, Erica L Vielhaber, William A Hinz, et al.
The Journal of Clinical Investigation|May 10, 2022
A p300/GATA6 axis determines differentiation and Wnt dependency in pancreatic cancer modelsZheng Zhong, Nathan Harmston, Kris C Wood, et al.
Methods in Enzymology|April 9, 2005
Casein kinase I in the mammalian circadian clockErik J Eide, Heeseog Kang, Stephanie Crapo, et al.
Biology Open|June 22, 2013
BUBR1 recruits PP2A via the B56 family of targeting subunits to promote chromosome congressionPeng Xu, Elizabeth A Raetz, Mayumi Kitagawa, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 31, 2002
Casein kinase I phosphorylates and destabilizes the beta-catenin degradation complexZhong-Hua Gao, Joni M Seeling, Virginia Hill, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 7, 2007
Control of mitotic exit by PP2A regulation of Cdc25C and Cdk1Craig M Forester, Jessica Maddox, Justin V Louis, et al.
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