Lily M. Ng
Affiliations: | Cleveland State University, Cleveland, OH, United States |
Area:
Physical Chemistry, BiochemistryGoogle:
"Lily Ng"Mean distance: (not calculated yet)
Children
Sign in to add traineeSung-fang Chen | grad student | 2000 | Cleveland State University |
Reiko M. Simmons | grad student | 2000 | Cleveland State University |
Beatrix Budy | grad student | 2003 | Cleveland State University |
Doritza Pagan-Rodriguez | grad student | 2004 | Cleveland State University |
Julia Vaynberg | grad student | 2004 | Cleveland State University |
Joseph A. Lupica | grad student | 2008 | Cleveland State University |
Quynhgiao N. Nguyen | grad student | 2008 | Cleveland State University |
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Publications
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Sulton D, Pagan-Rodriguez D, Zhou X, et al. (2005) Clavulanic acid inactivation of SHV-1 and the inhibitor-resistant S130G SHV-1 beta-lactamase. Insights into the mechanism of inhibition. The Journal of Biological Chemistry. 280: 35528-36 |
Vaynberg J, Fukuda T, Chen K, et al. (2005) Structure of an ultraweak protein-protein complex and its crucial role in regulation of cell morphology and motility. Molecular Cell. 17: 513-23 |
Vaynberg J, Ng LM. (2005) Surface chemistry of fluoroethanols II. A FTIR study of the reaction of 2,2,2-trifluoroethanol on Al2O3 surface Surface Science. 577: 188-199 |
Vaynberg J, Ng LM. (2005) Surface chemistry of fluoroethanols: I. A FTIR study of the reaction of 2,2-difluoroethanol on Al2O3 surface Surface Science. 577: 175-187 |
Pagan-Rodriguez D, Zhou X, Simmons R, et al. (2004) Tazobactam inactivation of SHV-1 and the inhibitor-resistant Ser130 -->Gly SHV-1 beta-lactamase: insights into the mechanism of inhibition. The Journal of Biological Chemistry. 279: 19494-501 |
Bonomo RA, Liu J, Chen Y, et al. (2001) Inactivation of CMY-2 beta-lactamase by tazobactam: initial mass spectroscopic characterization. Biochimica Et Biophysica Acta. 1547: 196-205 |
Fan Q, Ng LM. (1995) In situ photoelectrochemical characteristics of the n-CdTe | acetic acid solution interface by FTIR-ATR Journal of Electroanalytical Chemistry. 398: 151-157 |