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Genetics|December 1, 1993
The pheromone receptors inhibit the pheromone response pathway in Saccharomyces cerevisiae by a process that is independent of their associated G alpha proteinJ P Hirsch, F R CrossJournal of Virology|February 1, 1983
Cycloheximide stimulates early adenovirus transcription if early gene expression is allowed before treatmentF R Cross, J E DarnellMolecular and Cellular Biology|December 28, 1999
Distinct subcellular localization patterns contribute to functional specificity of the Cln2 and Cln3 cyclins of Saccharomyces cerevisiaeM E Miller, F R CrossGenes & Development|May 1, 1994
G1 cyclins CLN1 and CLN2 repress the mating factor response pathway at Start in the yeast cell cycleL J Oehlen, F R CrossThe Journal of Biological Chemistry|September 17, 1998
Potential regulation of Ste20 function by the Cln1-Cdc28 and Cln2-Cdc28 cyclin-dependent protein kinasesL J Oehlen, F R CrossThe Journal of Biological Chemistry|May 16, 1998
The role of Cdc42 in signal transduction and mating of the budding yeast Saccharomyces cerevisiaeL J Oehlen, F R CrossGenes & Development|September 1, 1992
CLB5: a novel B cyclin from budding yeast with a role in S phaseC B Epstein, F R CrossMolecular and Cellular Biology|June 10, 2000
Conservation and function of a potential substrate-binding domain in the yeast Clb5 B-type cyclinF R Cross, M D JacobsonGenetics|February 2, 1999
Interaction between the MEC1-dependent DNA synthesis checkpoint and G1 cyclin function in Saccharomyces cerevisiaeE A Vallen, F R CrossMolecular and Cellular Biology|March 1, 1994
Genes that can bypass the CLN requirement for Saccharomyces cerevisiae cell cycle STARTC B Epstein, F R CrossPageof 188