The increasing incidence of antibiotic resistant bacterial infections indicates the need for improved constructs to treat enterococcal infected patients. Modification of existing glycopeptide antibiotics, such as vancomycin and teicoplanin, on and around the sugar substitutents has led to the clinical trials of new treatments, including oritavancin. The long-term goal of this research is to develop an improved understanding of the active-site selectivity of glycosyltransferases so that new, non-native carbohydrate-based constructs may be identified for treatment of drug-resistant infections. The specific question addressed in the context of this research is: """"""""How is the native enzyme active site modified in a mutant glycosyltransferase that is capable of glycosylating a non-native substrate?"""""""" This research will develop an existing tool in molecular biology, phage display, for the molecular evolution of mutant glycosyltransferases. We believe that identifying enzymes that can glycosylate new substrates will segue into the generation of catalysts able to compete with chemical synthesis for the rapid and large scale production of glycoconjugates.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Postdoctoral Individual National Research Service Award (F32)
Project #
7F32AI063854-03
Application #
7239269
Study Section
Special Emphasis Panel (ZRG1-F04A (20))
Program Officer
Peters, Kent
Project Start
2005-04-01
Project End
2008-03-31
Budget Start
2006-06-01
Budget End
2007-03-31
Support Year
3
Fiscal Year
2006
Total Cost
$38,706
Indirect Cost
Name
Whitehead Institute for Biomedical Research
Department
Type
DUNS #
120989983
City
Cambridge
State
MA
Country
United States
Zip Code
02142
Pandya, Renuka K; Partridge, James R; Love, Kerry Routenberg et al. (2010) A structural element within the HUWE1 HECT domain modulates self-ubiquitination and substrate ubiquitination activities. J Biol Chem 285:5664-73
Love, Kerry Routenberg; Pandya, Renuka K; Spooner, Eric et al. (2009) Ubiquitin C-terminal electrophiles are activity-based probes for identification and mechanistic study of ubiquitin conjugating machinery. ACS Chem Biol 4:275-87
Love, Kerry Routenberg; Catic, Andre; Schlieker, Christian et al. (2007) Mechanisms, biology and inhibitors of deubiquitinating enzymes. Nat Chem Biol 3:697-705
Bonasio, Roberto; Carman, Christopher V; Kim, Enoch et al. (2007) Specific and covalent labeling of a membrane protein with organic fluorochromes and quantum dots. Proc Natl Acad Sci U S A 104:14753-8
Love, Kerry Routenberg; Swoboda, Jonathan G; Noren, Christopher J et al. (2006) Enabling glycosyltransferase evolution: a facile substrate-attachment strategy for phage-display enzyme evolution. Chembiochem 7:753-6