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  • Author: Elion EA
  • References

Author: Elion EA


References 36 references


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  • Farley FW, et al. (2023) Effects of HSP70 chaperones Ssa1 and Ssa2 on Ste5 scaffold and the mating mitogen-activated protein kinase (MAPK) pathway in Saccharomyces cerevisiae. PLoS One 18(10):e0289339 PMID:37851593
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  • Hu Z, et al. (2016) Mapping regions in Ste5 that support Msn5-dependent and -independent nuclear export. Biochem Cell Biol 94(2):109-28 PMID:26824509
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  • Wang X, et al. (2011) Ste11p MEKK signals through HOG, mating, calcineurin and PKC pathways to regulate the FKS2 gene. BMC Mol Biol 12:51 PMID:22114773
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  • Elion EA and Sahoo R (2010) Analysis of mitogen-activated protein kinase activity in yeast. Methods Mol Biol 661:387-99 PMID:20811996
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  • Yu L, et al. (2008) Counteractive control of polarized morphogenesis during mating by mitogen-activated protein kinase Fus3 and G1 cyclin-dependent kinase. Mol Biol Cell 19(4):1739-52 PMID:18256288
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  • Elion EA, et al. (2005) Signal transduction. Signaling specificity in yeast. Science 307(5710):687-8 PMID:15692041
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  • Qi M and Elion EA (2005) MAP kinase pathways. J Cell Sci 118(Pt 16):3569-72 PMID:16105880
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  • Qi M and Elion EA (2005) Formin-induced actin cables are required for polarized recruitment of the Ste5 scaffold and high level activation of MAPK Fus3. J Cell Sci 118(Pt 13):2837-48 PMID:15961405
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    • Reference supplement
  • Wang Y, et al. (2005) Cdc24 regulates nuclear shuttling and recruitment of the Ste5 scaffold to a heterotrimeric G protein in Saccharomyces cerevisiae. J Biol Chem 280(13):13084-96 PMID:15657049
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  • Andersson J, et al. (2004) Differential input by Ste5 scaffold and Msg5 phosphatase route a MAPK cascade to multiple outcomes. EMBO J 23(13):2564-76 PMID:15192700
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  • Elion EA and Wang Y (2004) Making protein immunoprecipitates. Methods Mol Biol 284:1-14 PMID:15173605
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  • Flotho A, et al. (2004) Localized feedback phosphorylation of Ste5p scaffold by associated MAPK cascade. J Biol Chem 279(45):47391-401 PMID:15322134
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  • Cherkasova VA, et al. (2003) A novel functional link between MAP kinase cascades and the Ras/cAMP pathway that regulates survival. Curr Biol 13(14):1220-6 PMID:12867033
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  • Wang Y and Elion EA (2003) Nuclear export and plasma membrane recruitment of the Ste5 scaffold are coordinated with oligomerization and association with signal transduction components. Mol Biol Cell 14(6):2543-58 PMID:12808050
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  • Cherkasova V and Elion EA (2001) far4, far5, and far6 define three genes required for efficient activation of MAPKs Fus3 and Kss1 and accumulation of glycogen. Curr Genet 40(1):13-26 PMID:11570512
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  • Elion EA (2001) The Ste5p scaffold. J Cell Sci 114(Pt 22):3967-78 PMID:11739629
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  • Farley FW, et al. (2001) Relative Dependence of Different Outputs of the Saccharomyces cerevisiae Pheromone Response Pathway on the MAP Kinase Fus3p. Genetics 159(4):1867A-1867
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  • Elion EA (2000) Pheromone response, mating and cell biology. Curr Opin Microbiol 3(6):573-81 PMID:11121776
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  • Cherkasova V, et al. (1999) Fus3p and Kss1p control G1 arrest in Saccharomyces cerevisiae through a balance of distinct arrest and proliferative functions that operate in parallel with Far1p. Genetics 151(3):989-1004 PMID:10049917
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  • Choi KY, et al. (1999) Characterization of Fus3 localization: active Fus3 localizes in complexes of varying size and specific activity. Mol Biol Cell 10(5):1553-68 PMID:10233162
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  • Farley FW, et al. (1999) Relative dependence of different outputs of the Saccharomyces cerevisiae pheromone response pathway on the MAP kinase Fus3p. Genetics 151(4):1425-44 PMID:10101167
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  • Lee BN and Elion EA (1999) The MAPKKK Ste11 regulates vegetative growth through a kinase cascade of shared signaling components. Proc Natl Acad Sci U S A 96(22):12679-84 PMID:10535982
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  • Leza MA and Elion EA (1999) POG1, a novel yeast gene, promotes recovery from pheromone arrest via the G1 cyclin CLN2. Genetics 151(2):531-43 PMID:9927449
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  • Mahanty SK, et al. (1999) Nuclear shuttling of yeast scaffold Ste5 is required for its recruitment to the plasma membrane and activation of the mating MAPK cascade. Cell 98(4):501-12 PMID:10481914
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  • Elion EA (1998) Routing MAP kinase cascades. Science 281(5383):1625-6 PMID:9767029
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  • Feng Y, et al. (1998) Functional binding between Gbeta and the LIM domain of Ste5 is required to activate the MEKK Ste11. Curr Biol 8(5):267-78 PMID:9501067
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  • Lyons DM, et al. (1996) The SH3-domain protein Bem1 coordinates mitogen-activated protein kinase cascade activation with cell cycle control in Saccharomyces cerevisiae. Mol Cell Biol 16(8):4095-106 PMID:8754808
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  • Elion EA (1995) Ste5: a meeting place for MAP kinases and their associates. Trends Cell Biol 5(8):322-7 PMID:14732097
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  • Elion EA, et al. (1995) Fus2 localizes near the site of cell fusion and is required for both cell fusion and nuclear alignment during zygote formation. J Cell Biol 130(6):1283-96 PMID:7559752
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  • Brill JA, et al. (1994) A role for autophosphorylation revealed by activated alleles of FUS3, the yeast MAP kinase homolog. Mol Biol Cell 5(3):297-312 PMID:8049522
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  • Choi KY, et al. (1994) Ste5 tethers multiple protein kinases in the MAP kinase cascade required for mating in S. cerevisiae. Cell 78(3):499-512 PMID:8062390
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  • Kranz JE, et al. (1994) The MAP kinase Fus3 associates with and phosphorylates the upstream signaling component Ste5. Genes Dev 8(3):313-27 PMID:8314085
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  • Elion EA, et al. (1993) FUS3 phosphorylates multiple components of the mating signal transduction cascade: evidence for STE12 and FAR1. Mol Biol Cell 4(5):495-510 PMID:8334305
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  • Elion EA, et al. (1991) Functional redundancy in the yeast cell cycle: FUS3 and KSS1 have both overlapping and unique functions. Cold Spring Harb Symp Quant Biol 56:41-9 PMID:1819502
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  • Elion EA, et al. (1991) FUS3 represses CLN1 and CLN2 and in concert with KSS1 promotes signal transduction. Proc Natl Acad Sci U S A 88(21):9392-6 PMID:1946350
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  • Elion EA, et al. (1990) FUS3 encodes a cdc2+/CDC28-related kinase required for the transition from mitosis into conjugation. Cell 60(4):649-64 PMID:2406028
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