David Ken Shintani
Affiliations: | University of Nevada, Reno, Reno, NV, United States |
Area:
BiochemistryWebsite:
https://www.unr.edu/molecular-biosciences/faculty/david-shintaniGoogle:
"David Ken Shintani"Bio:
https://www.unr.edu/Documents/graduate-school/MB%20Grad%20Program/shintani_cv_2013_complete.pdf
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Parents
Sign in to add mentorJohn Beyer Ohlrogge | grad student | 1996 | Michigan State | |
(How plants manage their fatty assets : a study into the organization and regulation of the plant fatty acid biosynthetic pathway.) | ||||
Dean DellaPenna | post-doc | 1992-1996 | University of Nevada, Reno (Cell Biology Tree) |
Children
Sign in to add traineeYoseph Tsegaye | grad student | 2003 | University of Nevada, Reno |
Imad Ajjawi | grad student | 2006 | University of Nevada, Reno |
Meral Tunc | grad student | 2008 | University of Nevada, Reno |
Jillian E. Collins | grad student | 2009 | University of Nevada, Reno |
Upul I. Hathwaik | grad student | 2012 | University of Nevada, Reno |
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Publications
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Neupane BP, Shintani D, Lin H, et al. (2016) Grindelia squarrosa: A Potential Arid Lands Biofuel Plant Acs Sustainable Chemistry & Engineering. 5: 995-1001 |
Reza MT, Yang X, Coronella CJ, et al. (2016) Hydrothermal Carbonization (HTC) and Pelletization of Two Arid Land Plants Bagasse for Energy Densification Acs Sustainable Chemistry and Engineering. 4: 1106-1114 |
Zallot R, Yazdani M, Goyer A, et al. (2014) Salvage of the thiamin pyrimidine moiety by plant TenA proteins lacking an active-site cysteine. The Biochemical Journal. 463: 145-55 |
Gidda SK, Watt S, Collins-Silva J, et al. (2013) Lipid droplet-associated proteins (LDAPs) are involved in the compartmentalization of lipophilic compounds in plant cells. Plant Signaling & Behavior. 8: e27141 |
Yazdani M, Zallot R, Tunc-Ozdemir M, et al. (2013) Identification of the thiamin salvage enzyme thiazole kinase in Arabidopsis and maize. Phytochemistry. 94: 68-73 |
Collins-Silva J, Nural AT, Skaggs A, et al. (2012) Altered levels of the Taraxacum kok-saghyz (Russian dandelion) small rubber particle protein, TkSRPP3, result in qualitative and quantitative changes in rubber metabolism. Phytochemistry. 79: 46-56 |
Ponciano G, McMahan CM, Xie W, et al. (2012) Transcriptome and gene expression analysis in cold-acclimated guayule (Parthenium argentatum) rubber-producing tissue. Phytochemistry. 79: 57-66 |
Tunc-Ozdemir M, Miller G, Song L, et al. (2009) Thiamin confers enhanced tolerance to oxidative stress in Arabidopsis Plant Physiology. 151: 421-432 |
Henry O, Lopez-Gallego F, Agger SA, et al. (2009) A versatile photoactivatable probe designed to label the diphosphate binding site of farnesyl diphosphate utilizing enzymes. Bioorganic & Medicinal Chemistry. 17: 4797-805 |
Xie W, McMahan CM, Degraw AJ, et al. (2008) Initiation of rubber biosynthesis: In vitro comparisons of benzophenone-modified diphosphate analogues in three rubber-producing species. Phytochemistry. 69: 2539-45 |