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FEBS Letters|January 29, 2000
Substrate specificity determinants of the checkpoint protein kinase Chk1J R Hutchins, M Hughes, P R ClarkeJournal of Molecular Biology|March 29, 1996
Solution structure of the N-terminal RNP domain of U1A protein: the role of C-terminal residues in structure stability and RNA bindingJ M Avis, F H Allain, P W Howe, et al.Molecular Biology of the Cell|April 1, 1993
Dephosphorylation of cdc25-C by a type-2A protein phosphatase: specific regulation during the cell cycle in Xenopus egg extractsP R Clarke, I Hoffmann, G Draetta, et al.The Journal of Biological Chemistry|July 10, 1979
Studies on the oxidation of isobutyrylcarnitine by beef and rat liver mitochondriaY R Choi, P R Clarke, L L BieberThe EMBO Journal|May 1, 1992
Cyclin A- and cyclin B-dependent protein kinases are regulated by different mechanisms in Xenopus egg extractsP R Clarke, D Leiss, M Pagano, et al.Journal of Cell Science|March 1, 1995
Regulation of Cdc2/cyclin B activation by Ran, a Ras-related GTPaseP R Clarke, C Klebe, A Wittinghofer, et al.Current Biology : CB|February 18, 1999
Bcl-2 regulates amplification of caspase activation by cytochrome cS C Cosulich, P J Savory, P R ClarkeThe Journal of Biological Chemistry|March 25, 1992
Inhibition of membrane fusion in vitro via cyclin B but not cyclin AL Thomas, P R Clarke, M Pagano, et al.FEBS Letters|December 20, 1993
Okadaic acid-sensitive protein phosphatases dephosphorylate MARCKS, a major protein kinase C substrateP R Clarke, S R Siddhanti, P Cohen, et al.Journal of Cell Science|November 1, 2001
XMog1, a nuclear ran-binding protein in Xenopus, is a functional homologue of Schizosaccharomyces pombe mog1p that co-operates with RanBP1 to control generation of Ran-GTPF J Nicolás, W J Moore, C Zhang, et al.Pageof 5