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Cell signaling / Scaffold protein / Protein kinase / Mitogen-activated protein kinase / Phosphorylation / RAD51 / Ultrasensitivity / MAPK/ERK pathway / Biology / Cell biology / Signal transduction


Conformational Control of the Ste5 Scaffold Protein Insulates Against MAP Kinase Misactivation Jesse G. Zalatan et al. Science 337, ); DOI: science
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Document Date: 2014-12-24 04:41:38


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M. S. Kellermayer S. P. / W. R. Burack A. S. / K. S. McDonald S. P. / J. F. Shaffer S. P. / HighWire Press / /

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United States / Canada / /

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Howard Hughes Medical Institute / University of Chicago / University of Vermont Microscopy Imaging Center / Modeling Facility / University of Toronto / The Ste5 scaffold / Ste5 scaffold / Fus3 complex / Hughes Medical Institute / College Street / Ste5 B A scaffold / University of California / /

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online version / Online Material / possible solution / mouse colony management / /

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starvation / α-factor starvation Dissociation / dissociation / Fus3 Kss1 mating invasive growth starvation / /

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National Institute of Health / University of Vermont / National Science Foundation / Terrence Donnelly Center for Cellular and Biomolecular Research / Department of Molecular Genetics / Hughes Medical Institute / University of Chicago / American Association for the Advancement of Science / Department of Cellular and Molecular Pharmacology / 4Banting and Best Department of Medical Research / University of California / San Francisco / University of Toronto / Vermont Microscopy Imaging Center / 3Howard Hughes Medical Institute / /

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Nat / T. Pawson / Scott M. Coyle / Ling Chan / /

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model for specific mating pathway activation / Prime Minister / /

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Sanyo R227 Portable Audio Device / adenosine / /

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Illinois / South Dakota / S. K. / California / Ontario / /

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Genomics / Radiation / x-ray / polymerization / DNA binding / html / cmp / recombination / 3G / /

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www.sciencemag.org/cgi/content/full/science.1223602/DC1 / www.sciencemag.org/cgi/content/full/science.1220683/DC1 / http /

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