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Carcinogenesis|January 1, 1982
Skin carcinogenesis and promoter binding characteristics in different mouse strainsJ F Wheldrake, J Marshall, J Ramli, et al.The Biochemical Journal|February 1, 1975
Multiple protein kinases from human lymphocytes. Identification enzymes phosphorylating exogenous histon and caseinB E Kemp, M Froscio, A Rogers, et al.The Journal of Cell Biology|October 24, 1998
Spindle checkpoint protein Xmad1 recruits Xmad2 to unattached kinetochoresR H Chen, A Shevchenko, M Mann, et al.The Journal of Investigative Dermatology|April 1, 1976
Localization of adenosine o',5'-monophosphate in mouse epidermis by immunofluorescenceA K Verma, K E Dixon, M Froscio, et al.Cancer Letters|November 1, 1981
Loss of receptor activity for mouse erythrocytes precedes tumour promoter-induced maturation of chronic lymphocytic leukaemia cellsI J Forbes, P D Zalewski, L Valente, et al.Nature|December 11, 1999
From molecular to modular cell biologyL H Hartwell, J J Hopfield, S Leibler, et al.Biochemical and Biophysical Research Communications|October 15, 1991
Phosphorylation and chromatin mechanics: the central importance of substrate conformation in determining the patterns of HL-60 nuclear phosphorylationA Testori, J D Skinner, A W Murray, et al.FEBS Letters|October 23, 1989
Phorbol esters stimulate a phospholipase D-catalysed reaction with both ester- and ether-linked phospholipids in HeLa cellsC S Hii, Y S Kokke, W Pruimboom, et al.Cell|July 2, 1993
Anaphase is initiated by proteolysis rather than by the inactivation of maturation-promoting factorS L Holloway, M Glotzer, R W King, et al.Carcinogenesis|January 1, 1982
Two-stage skin carcinogenesis in sensitive and resistant mouse strainsL K Ashman, A W Murray, M G Cook, et al.Pageof 299