Kenneth D. Harrison, Ph.D.

Affiliations: 
2009 Yale University, New Haven, CT 
Area:
Cell Biology, Biochemistry
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"Kenneth Harrison"
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William C. Sessa grad student 2009 Yale
 (Characterization of the Nogo -B receptor: Identification of a nexus between intracellular cholesterol trafficking and cis -prenyltransferase activity.)
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Publications

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Currie E, Guo X, Christiano R, et al. (2014) High confidence proteomic analysis of yeast LDs identifies additional droplet proteins and reveals connections to dolichol synthesis and sterol acetylation. Journal of Lipid Research. 55: 1465-1477
Jozsef L, Tashiro K, Kuo A, et al. (2014) Reticulon 4 is necessary for endoplasmic reticulum tubulation, STIM1-Orai1 coupling, and store-operated calcium entry. The Journal of Biological Chemistry. 289: 9380-95
Harrison KD, Park EJ, Gao N, et al. (2011) Nogo-B receptor is necessary for cellular dolichol biosynthesis and protein N-glycosylation. The Embo Journal. 30: 2490-500
Muto A, Yi T, Harrison KD, et al. (2011) Eph-B4 prevents venous adaptive remodeling in the adult arterial environment. The Journal of Experimental Medicine. 208: 561-75
Muto A, Yi T, Harrison K, et al. (2010) SS6. Venous Specific Eph-B4 Regulates Vein Graft Thickening via Caveolin-1 Journal of Vascular Surgery. 51: 6S-7S
Harrison KD, Miao RQ, Fernandez-Hernándo C, et al. (2009) Nogo-B receptor stabilizes Niemann-Pick type C2 protein and regulates intracellular cholesterol trafficking. Cell Metabolism. 10: 208-18
Schleicher M, Yu J, Murata T, et al. (2009) The Akt1-eNOS axis illustrates the specificity of kinase-substrate relationships in vivo Science Signaling. 2: ra41
Suárez Y, Fernández-Hernando C, Yu J, et al. (2008) Dicer-dependent endothelial microRNAs are necessary for postnatal angiogenesis. Proceedings of the National Academy of Sciences of the United States of America. 105: 14082-7
Derakhshan B, Harrison KD, Miao QR, et al. (2008) Chapter 1 Approaches for Studying Angiogenesis-Related Signal Transduction Methods in Enzymology. 443: 1-23
Miao RQ, Fontana J, Fulton D, et al. (2008) Dominant-negative Hsp90 reduces VEGF-stimulated nitric oxide release and migration in endothelial cells. Arteriosclerosis, Thrombosis, and Vascular Biology. 28: 105-11
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