Levin,DavidE.
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Levin,DavidE.

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官方网页科教人文Levin,DavidE.个人资料、作品Levin,DavidE.个人资料,教授-波士顿大学-个人资料,近期论文 Lee, J., W. Reiter, I. Dohnal, C. Gregori, S. Beese-Sims, K. Kuchler, G. Ammerer, and D. E. Levin (2013). MAPK Hog1 closes the S. cerevisiae glycerol channel Fps1 by phosphorylating and displacing its positive regulators. Genes & Dev. 27:2590

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近期论文Lee, J., W. Reiter, I. Dohnal, C. Gregori, S. Beese-Sims, K. Kuchler, G. Ammerer, and D. E. Levin (2013). MAPK Hog1 closes the S. cerevisiae glycerol channel Fps1 by phosphorylating and displacing its positive regulators. Genes & Dev. 27:2590-2601.Beese-Sims, S. E., S-J Pan, J. Lee, E. Hwang-Wong, B. P. Cormack, and D. E. Levin. (2012). Mutants in the Candida glabrata glycerol channels are sensitive to cell wall stress. Euk. Cell, 11:1512-1519.Levin, D. E. (2011). Regulation of cell wall biogenesis in Saccharomyces cerevisiae: The cell wall integrity signaling pathway. Genetics, 189: 1145-1175.Beese-Sims, S. E., Lee, J., and Levin, D. E. (2011). Yeast Fps1 glycerol facilitator functions as a homotetramer. Yeast, 28: 815-819.Kim, K-Y and D. E. Levin (2011). Mpk1 MAPK association with the Paf1 complex blocks Sen1-mediated premature transcription termination. Cell, 144: 745-756.Kim, K-Y., A. W. Truman, S. Caesar, G. Schlenstedt, and D. E. Levin. (2010). Yeast Mpk1 cell wall integrity MAPK regulates nucleocytoplasmic shuttling of the Swi6 transcriptional regulator. Mol. Biol. Cell, 21:1609-1619.Beese, S. E., T. Negishi, and D. E. Levin. (2009). Identification of positive regulators of the yeast Fps1 glycerol channel. PLoS Genetics, 5: e1000738.Truman, A. W., K-Y. Kim, and D. E. Levin. (2009). Mechanism of Mpk1 MAPK binding to the Swi4 transcription factor and its regulation by a novel caffeine-induced phosphorylation. Mol. Cell. Biol., 29:6449-6461.Kim, K-Y., A. W. Truman, and D. E. Levin. (2008). Yeast Mpk1 MAPK activates transcription through Swi4/Swi6 by a non-catalytic mechanism that requires upstream signal. Mol. Cell. Biol., 28:2579-2589.Newman, H. A., M. J. Romeo, S. E. Lewis, B. C. Yan, P. Orlean, and D. E. Levin. (2005). Gpi19, the Saccharomyces cerevisiae homologue of mammalian PIG-P, is a subunit of the initial enzyme for glycosylphosphatidylinositol anchor biosynthesis. Eukaryotic Cell 4:1801-1807.Vay, H. A., A. K. Sobering, and D. E. Levin. (2004). Mutational analysis of the cytoplasmic domain of the Wsc1 cell wall stress sensor. Microbiology 150: 3281-3288.Sobering, A. K., R. Watanabe, M. J. Romeo, B. C. Yan, C. A. Specht, P. Orlean, H. Riezman, and D. E. Levin. (2004). Yeast Ras regulates the complex that catalyzes the first step in GPI-anchor biosynthesis at the ER. Cell 117:637-648.

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