Irene M. Ota

Affiliations: 
University of Colorado, Boulder, Boulder, CO, United States 
Area:
Molecular Biology
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"Irene Ota"
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Publications

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Ota IM, Mapes J. (2007) Targeting of PP2C in budding yeast. Methods in Molecular Biology (Clifton, N.J.). 365: 309-22
Mapes J, Ota IM. (2004) Nbp2 targets the Ptc1-type 2C Ser/Thr phosphatase to the HOG MAPK pathway. The Embo Journal. 23: 302-11
Young C, Mapes J, Hanneman J, et al. (2003) Role of Ptc2 type 2C Ser/Thr phosphatase in yeast high-osmolarity glycerol pathway inactivation. Eukaryotic Cell. 1: 1032-40
Winkler A, Arkind C, Mattison CP, et al. (2002) Heat stress activates the yeast high-osmolarity glycerol mitogen-activated protein kinase pathway, and protein tyrosine phosphatases are essential under heat stress. Eukaryotic Cell. 1: 163-73
Warmka J, Hanneman J, Lee J, et al. (2001) Ptc1, a type 2C Ser/Thr phosphatase, inactivates the HOG pathway by dephosphorylating the mitogen-activated protein kinase Hog1. Molecular and Cellular Biology. 21: 51-60
Mattison CP, Ota IM. (2000) Two protein tyrosine phosphatases, Ptp2 and Ptp3, modulate the subcellular localization of the Hog1 MAP kinase in yeast. Genes & Development. 14: 1229-35
Mattison CP, Spencer SS, Kresge KA, et al. (1999) Differential regulation of the cell wall integrity mitogen-activated protein kinase pathway in budding yeast by the protein tyrosine phosphatases Ptp2 and Ptp3. Molecular and Cellular Biology. 19: 7651-60
Jacoby T, Flanagan H, Faykin A, et al. (1997) Two protein-tyrosine phosphatases inactivate the osmotic stress response pathway in yeast by targeting the mitogen-activated protein kinase, Hog1. The Journal of Biological Chemistry. 272: 17749-55
Johnson ES, Ma PC, Ota IM, et al. (1995) A proteolytic pathway that recognizes ubiquitin as a degradation signal. The Journal of Biological Chemistry. 270: 17442-56
Ota IM, Varshavsky A. (1993) A yeast protein similar to bacterial two-component regulators. Science (New York, N.Y.). 262: 566-9
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