Phil Garner

Chemistry Washington State University, Pullman, WA, United States 
"Phil Garner"
Mean distance: 7.41


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Paul L. Dowd grad student
Paul A. Grieco post-doc


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Chung-Min Park grad student 2010 WSU
Frank B. Dyer grad student 2013 WSU
Rancothge L. Weerasinghe grad student 2013 WSU
Ryan Joseph grad student 2015 WSU
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Joseph R, Morales Padilla M, Garner P. (2015) Solid phase synthesis of ω-aspartic thioacid containing peptides Tetrahedron Letters. 56: 4302-4304
Murray C, Dyer FB, Garner P. (2015) Solid phase synthesis and ligative processing of photocaged aziridine-2-carbonyl-terminated peptides This Letter is dedicated to the memory of Professor Harry H. Wasserman Tetrahedron Letters. 56: 3636-3638
Garner P, Weerasinghe L, Van Houten I, et al. (2014) A concise [C+NC+CC] coupling-enabled synthesis of kaitocephalin. Chemical Communications (Cambridge, England). 50: 4908-10
Joseph R, Murray C, Garner P. (2014) Catalytic asymmetric exo-selective [C+NC+CC] reaction. Organic Letters. 16: 1550-3
Joseph R, Dyer FB, Garner P. (2013) Rapid formation of N-Glycopeptides via Cu(II)-promoted glycosylative ligation. Organic Letters. 15: 732-5
Ahmed AH, Hamada M, Shinada T, et al. (2012) The structure of (-)-kaitocephalin bound to the ligand binding domain of the (S)-α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA)/glutamate receptor, GluA2. The Journal of Biological Chemistry. 287: 41007-13
Garner P, Weerasinghe L, Youngs WJ, et al. (2012) [C+NC+CC] coupling-enabled synthesis of influenza neuramidase inhibitor A-315675. Organic Letters. 14: 1326-9
Dyer FB, Park CM, Joseph R, et al. (2011) Aziridine-mediated ligation and site-specific modification of unprotected peptides. Journal of the American Chemical Society. 133: 20033-5
Garner P, Kaniskan HÜ, Keyari CM, et al. (2011) Asymmetric [C + NC + CC] coupling entry to the naphthyridinomycin natural product family: formal total synthesis of cyanocycline A and bioxalomycin β2. The Journal of Organic Chemistry. 76: 5283-94
Garner P, Kaniskan HU. (2010) The asymmetric [C+NC+CC] coupling reaction: Development and application to natural product synthesis Current Organic Synthesis. 7: 348-362
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