Stephen Cooper

Affiliations: 
University of Michigan, Ann Arbor, Ann Arbor, MI 
Area:
regulation of eukaryotic cell growth and division
Website:
http://www.med.umich.edu/microbio/bio/cooper.htm
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"Stephen Cooper"
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SNBCP
Cross-listing: MichiganTree

Parents

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Norton D. Zinder grad student 1963 Rockefeller
 (Biochemical and biological studies on the growth of an RNA containing bacteriophage)
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Publications

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Cooper S. (2019) The Synchronization Manifesto: A critique of whole-culture synchronization. The Febs Journal
Cooper S. (2017) Rethinking cell-cycle-dependent gene expression in Schizosaccharomyces pombe. Antonie Van Leeuwenhoek
Cooper S. (2013) Schizosaccharomyces pombe grows exponentially during the division cycle with no rate change points. Fems Yeast Research. 13: 650-8
Cooper S. (2012) On a heuristic point of view concerning the expression of numerous genes during the cell cycle. Iubmb Life. 64: 10-7
Cooper S, Shedden K, Vu-Phan D. (2009) Invariant mRNA and mitotic protein breakdown solves the Russian Doll problem of the cell cycle. Cell Biology International. 33: 10-8
Cooper S, Gonzalez-Hernandez M. (2009) Experimental reconsideration of the utility of serum starvation as a method for synchronizing mammalian cells. Cell Biology International. 33: 71-7
Cooper S. (2008) On the fiftieth anniversary of the Schaechter, Maaløe, Kjeldgaard experiments: implications for cell-cycle and cell-growth control. Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology. 30: 1019-24
Cooper S, Chen KZ, Ravi S. (2007) Thymidine block does not synchronize L1210 mouse leukaemic cells: implications for cell cycle control, cell cycle analysis and whole-culture synchronization Cell Proliferation. 41: 156-167
Cooper S, Shedden K. (2007) Microarrays and the relationship of mRNA variation to protein variation during the cell cycle. Journal of Theoretical Biology. 249: 574-81
Cooper S, Paulsen M, Ljungman M, et al. (2007) Membrane-elution analysis of content of cyclins A, B1, and E during the unperturbed mammalian cell cycle. Cell Division. 2: 28
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