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Results: 1-10 |
Results: 10

Authors: Haney, SA Xu, J Lee, SY Ma, CL Duzic, E Broach, JR Manfredi, JP
Citation: Sa. Haney et al., Genetic selection in Saccharomyces of mutant mammalian adenylyl cyclases with elevated basal activities, MOL GENET G, 265(6), 2001, pp. 1120-1128

Authors: Bi, X Broach, JR
Citation: X. Bi et Jr. Broach, Chromosomal boundaries in S-cerevisiae, CUR OP GEN, 11(2), 2001, pp. 199-204

Authors: Nielsen, KH Gredsted, L Broach, JR Willumsen, BM
Citation: Kh. Nielsen et al., Sensitivity of wild type and mutant ras alleles to Ras specific exchange factors: Identification of factor specific requirements, ONCOGENE, 20(17), 2001, pp. 2091-2100

Authors: Johnston, SD Enomoto, S Schneper, L McClellan, MC Twu, F Montgomery, ND Haney, SA Broach, JR Berman, J
Citation: Sd. Johnston et al., CAC3 (MSI1) suppression of RAS2(G19V) is independent of chromatin assemblyfactor I and mediated by NPR1, MOL CELL B, 21(5), 2001, pp. 1784-1794

Authors: Wu, J Tolstykh, T Lee, J Boyd, K Stock, JB Broach, JR
Citation: J. Wu et al., Carboxyl methylation of the phosphoprotein phosphatase 2A catalytic subunit promotes its functional association with regulatory subunits in vivo, EMBO J, 19(21), 2000, pp. 5672-5681

Authors: Bi, X Broach, JR
Citation: X. Bi et Jr. Broach, UAS(rpg) can function as a heterochromatin boundary element in yeast, GENE DEV, 13(9), 1999, pp. 1089-1101

Authors: Jiang, Y Broach, JR
Citation: Y. Jiang et Jr. Broach, Tor proteins and protein phosphatase 2A reciprocally regulate Tap42 in controlling cell growth in yeast, EMBO J, 18(10), 1999, pp. 2782-2792

Authors: Meluh, PB Broach, JR
Citation: Pb. Meluh et Jr. Broach, Immunological analysis of yeast chromatin, METH ENZYM, 304, 1999, pp. 414-430

Authors: Bi, X Braunstein, M Shei, GJ Broach, JR
Citation: X. Bi et al., The yeast HML I silencer defines a heterochromatin domain boundary by directional establishment of silencing, P NAS US, 96(21), 1999, pp. 11934-11939

Authors: Jiang, Y Davis, C Broach, JR
Citation: Y. Jiang et al., Efficient transition to growth on fermentable carbon sources in Saccharomyces cerevisiae requires signaling through the Ras pathway, EMBO J, 17(23), 1998, pp. 6942-6951
Risultati: 1-10 |