Search Results - "Bardes, S"

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  1. 1

    Determinants of Swe1p degradation in Saccharomyces cerevisiae by McMillan, John N, Theesfeld, Chandra L, Harrison, Jacob C, Bardes, Elaine S G, Lew, Daniel J

    Published in Molecular biology of the cell (01-10-2002)
    “…Swe1p, the sole Wee1-family kinase in Saccharomyces cerevisiae, is synthesized during late G1 and is then degraded as cells proceed through the cell cycle…”
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  2. 2

    The Morphogenesis Checkpoint in Saccharomyces cerevisiae: Cell Cycle Control of Swe1p Degradation by Hsl1p and Hsl7p by McMillan, John N., Longtine, Mark S., Sia, Rey A. L., Theesfeld, Chandra L., Bardes, Elaine S. G., Pringle, John R., Lew, Daniel J.

    Published in Molecular and Cellular Biology (01-10-1999)
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  3. 3

    The chicken RH map: current state of progress and microchromosome mapping by Morisson, M, Denis, M, Milan, D, Klopp, C, Leroux, S, Bardes, S, Pitel, F, Vignoles, F, Gérus, M, Fillon, V, Douaud, M, Vignal, A

    Published in Cytogenetic and genome research (01-01-2007)
    “…The ChickRH6 radiation hybrid panel has been used to construct consensus chromosome radiation hybrid (RH) maps of the chicken genome. Markers genotyped were…”
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  4. 4

    Phosphorylation-Independent Inhibition of Cdc28p by the Tyrosine Kinase Swe1p in the Morphogenesis Checkpoint by McMillan, John N., Sia, Rey A. L., Bardes, Elaine S. G., Lew, Daniel J.

    Published in Molecular and Cellular Biology (01-09-1999)
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  5. 5

    A phorbol ester binding domain of protein kinase C gamma. High affinity binding to a glutathione-S-transferase/Cys2 fusion protein by QUEST, A. F. G, BARDES, E. S. G, BELL, R. M

    Published in The Journal of biological chemistry (28-01-1994)
    “…Cysteine-rich regions of protein kinase C (PKC) are implicated in diacylglycerol-dependent regulation of kinase activity. The second cysteine-rich region…”
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  6. 6

    The checkpoint kinase Hsl1p is activated by Elm1p-dependent phosphorylation by Szkotnicki, Lee, Crutchley, John M, Zyla, Trevin R, Bardes, Elaine S G, Lew, Daniel J

    Published in Molecular biology of the cell (01-11-2008)
    “…Saccharomyces cerevisiae cells growing in the outdoor environment must adapt to sudden changes in temperature and other variables. Many such changes trigger…”
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  7. 7

    Septin Ring Assembly Involves Cycles of GTP Loading and Hydrolysis by Cdc42p by Gladfelter, Amy S., Bose, Indrani, Zyla, Trevin R., Elaine S. G. Bardes, Lew, Daniel J.

    Published in The Journal of cell biology (21-01-2002)
    “…At the beginning of the budding yeast cell cycle, the GTPase Cdc42p promotes the assembly of a ring of septins at the site of future bud emergence. Here, we…”
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  8. 8

    Assembly of Scaffold-mediated Complexes Containing Cdc42p, the Exchange Factor Cdc24p, and the Effector Cla4p Required for Cell Cycle-regulated Phosphorylation of Cdc24p by Bose, Indrani, Irazoqui, Javier E., Moskow, John J., Bardes, ElaineS.G., Zyla, Trevin R., Lew, Daniel J.

    Published in The Journal of biological chemistry (09-03-2001)
    “…In budding yeast cells, the cytoskeletal polarization and depolarization events that shape the bud are triggered at specific times during the cell cycle by the…”
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  9. 9

    Differential Susceptibility of Yeast S and M Phase CDK Complexes to Inhibitory Tyrosine Phosphorylation by Keaton, Mignon A., Bardes, Elaine S.G., Marquitz, Aron R., Freel, Christopher D., Zyla, Trevin R., Rudolph, Johannes, Lew, Daniel J.

    Published in Current biology (17-07-2007)
    “…Several checkpoint pathways employ Wee1-mediated inhibitory tyrosine phosphorylation of cyclin-dependent kinases (CDKs) to restrain cell-cycle progression…”
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  10. 10

    Protein kinase C-dependent regulation of human erythroleukemia (HEL) cell sphingosine kinase activity by Buehrer, Benjamin M, Bardes, Elaine S, Bell, Robert M

    Published in Biochimica et biophysica acta (18-10-1996)
    “…Sphingosine kinase functions in both the catabolism of sphingosine and in signal transduction pathways utilizing sphingosine-1-phosphate. The regulation of…”
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  11. 11

    A phorbol ester binding domain of protein kinase C gamma. Deletion analysis of the Cys2 domain defines a minimal 43-amino acid peptide by QUEST, A. F. G, BARDES, E. S. G, BELL, R. M

    Published in The Journal of biological chemistry (28-01-1994)
    “…Cysteine-rich regions of protein kinase C (PKC) are critical for the lipid-dependent regulation of activity and are implicated in the coordination of zinc. A…”
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  12. 12

    Molecular dissection of the checkpoint kinase Hsl1p by Crutchley, John, King, Kindra M, Keaton, Mignon A, Szkotnicki, Lee, Orlando, David A, Zyla, Trevin R, Bardes, Elaine S G, Lew, Daniel J

    Published in Molecular biology of the cell (01-04-2009)
    “…Cell shape can influence cell behavior. In Saccharomyces cerevisiae, bud emergence can influence cell cycle progression via the morphogenesis checkpoint. This…”
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  13. 13

    The regulatory domain of protein kinase C coordinates four atoms of zinc by Quest, A F, Bloomenthal, J, Bardes, E S, Bell, R M

    Published in The Journal of biological chemistry (15-05-1992)
    “…Protein kinase C (PKC) was found to be a zinc metallo-enzyme. Atomic absorption measurements on the intact enzyme indicated that four zinc atoms (4.2 +/- 0.5)…”
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  14. 14

    Combinatorial Control of Cyclin B1 Nuclear Trafficking through Phosphorylation at Multiple Sites by Yang, Jing, Song, Hebok, Walsh, Susan, Bardes, Elaine S.G., Kornbluth, Sally

    Published in The Journal of biological chemistry (02-02-2001)
    “…Entry into mitosis is regulated by the Cdc2 kinase complexed to B-type cyclins. We and others recently reported that cyclin B1/Cdc2 complexes, which appear to…”
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  15. 15

    2-Bromopalmitoyl-CoA and 2-bromopalmitate: promiscuous inhibitors of membrane-bound enzymes by Coleman, R A, Rao, P, Fogelsong, R J, Bardes, E S

    Published in Biochimica et biophysica acta (23-04-1992)
    “…2-Bromopalmitate and 2-bromopalmitoyl-CoA have been shown to inhibit a variety of enzymes and proteins associated with lipid metabolism. We found that both of…”
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  16. 16

    Perinatal hepatocyte/hepatoma hybrids: construction of clones that express the developmentally regulated monoacyglycerol acyltransferase activity by Coleman, RA, Bardes, ES

    Published in Journal of lipid research (01-12-1990)
    “…Microsomal monoacyglycerol acyltransferase is a developmentally expressed enzyme that catalyzes the synthesis of sn-1,2-diacylglycerol from…”
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  17. 17

    A monitor for bud emergence in the yeast morphogenesis checkpoint by Theesfeld, Chandra L, Zyla, Trevin R, Bardes, Elaine G S, Lew, Daniel J

    Published in Molecular biology of the cell (01-08-2003)
    “…Cell cycle transitions are subject to regulation by both external signals and internal checkpoints that monitor satisfactory progression of key cell cycle…”
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  18. 18

    Construction of a radiation hybrid map of chicken chromosome 2 and alignment to the chicken draft sequence by Leroux, Sophie, Dottax, Mélanie, Bardes, Suzanne, Vignoles, Florence, Fève, Katia, Pitel, Frédérique, Morisson, Mireille, Vignal, Alain

    Published in BMC genomics (04-02-2005)
    “…The ChickRH6 whole chicken genome radiation hybrid (RH) panel recently produced has already been used to build radiation hybrid maps for several chromosomes,…”
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  19. 19

    A high-resolution radiation hybrid map of chicken chromosome 5 and comparison with human chromosomes by Pitel, F, Abasht, B, Morrison, M, Crooijmans, R.P.M.A, Vignoles, F, Leroux, S, Feve, K, Bardes, S, Milan, D, Lagarrigue, S, Groenen, M.A.M, Douaire, M, Vignal, A

    Published in BMC genomics (15-09-2004)
    “…The resolution of radiation hybrid (RH) maps is intermediate between that of the genetic and BAC (Bacterial Artificial Chromosome) contig maps. Moreover, once…”
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  20. 20

    Solubilization and partial purification of neonatally expressed rat hepatic microsomal monoacylglycerol acyltransferase by Bhat, B G, Bardes, E S, Coleman, R A

    Published in Archives of biochemistry and biophysics (01-02-1993)
    “…Rat hepatic microsomal monoacylglycerol acyltransferase (MGAT) is a developmentally expressed enzyme that catalyzes the formation of sn-1,2-diacylglycerol from…”
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