Brian James Bennion

Affiliations: 
2003 University of Washington, Seattle, Seattle, WA 
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"Brian Bennion"
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Valerie D. Daggett grad student 2003 University of Washington
 (Computational studies of protein stabilization and denaturation by small molecules.)
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Publications

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Bennion BJ, Essiz SG, Lau EY, et al. (2015) A wrench in the works of human acetylcholinesterase: soman induced conformational changes revealed by molecular dynamics simulations. Plos One. 10: e0121092
Beck DA, Bennion BJ, Alonso DO, et al. (2007) Simulations of macromolecules in protective and denaturing osmolytes: properties of mixed solvent systems and their effects on water and protein structure and dynamics. Methods in Enzymology. 428: 373-96
Rutherford K, Bennion BJ, Parson WW, et al. (2006) The 108M polymorph of human catechol O-methyltransferase is prone to deformation at physiological temperatures. Biochemistry. 45: 2178-88
Bennion BJ, DeMarco ML, Daggett V. (2004) Preventing misfolding of the prion protein by trimethylamine N-oxide. Biochemistry. 43: 12955-63
Bennion BJ, Daggett V. (2004) Counteraction of urea-induced protein denaturation by trimethylamine N-oxide: a chemical chaperone at atomic resolution. Proceedings of the National Academy of Sciences of the United States of America. 101: 6433-8
Bennion BJ, Daggett V. (2003) The molecular basis for the chemical denaturation of proteins by urea Proceedings of the National Academy of Sciences of the United States of America. 100: 5142-5147
Bennion BJ, Daggett V. (2002) Protein conformation and diagnostic tests: the prion protein. Clinical Chemistry. 48: 2105-14
Day R, Bennion BJ, Ham S, et al. (2002) Increasing temperature accelerates protein unfolding without changing the pathway of unfolding Journal of Molecular Biology. 322: 189-203
Zou Q, Bennion BJ, Daggett V, et al. (2002) The molecular mechanism of stabilization of proteins by TMAO and its ability to counteract the effects of urea. Journal of the American Chemical Society. 124: 1192-202
Li B, Alonso DOV, Bennion BJ, et al. (2001) Hydrophobic hydration is an important source of elasticity in elastin-based biopolymers Journal of the American Chemical Society. 123: 11991-11998
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