Lantibiotics are a group of ribosomally synthesized peptide antibiotics that are post-translationally modified to their bioactive forms. These modifications include initial dehydration of serine and threonine residues followed by cyclization of cysteines onto the dehydro amino acids generated in the first step. Previous in vivo studies revealed that the enzymes responsible for these processes lack absolute substrate specificity. Thus, protein engineering using chemically synthesized unnatural peptide substrates may provide a valuable tool to study structure-function relationships in lantibiotic biosynthesis, and to establish their molecular mechanism(s) of cytotoxicity. In order to achieve these goals, the activities of the enzymes involved in lacticin 481 biosynthesis will be investigated in the first two specific aims. These studies will focus on the interaction of the enzyme with their substrates and the mechanism of dehydration and cyclization. Genetic protein engineering is limited to the 21 physiological amino acids. However, since the size of the prepeptides of lantibiotics is well within the limit of solid phase peptide synthesis, the pool of available amino acids that can be used for """"""""chemical protein engineering"""""""" is increased dramatically. Thus, in the fourth specific aim, the natural peptide substrates for post-translational modification will be altered at specific positions by substitution with synthetic unnatural amino acid analogs. This approach may be very powerful to gain insight into the mechanism of biosynthesis of the lantibiotics. Moreover, these studies may produce novel variants of the natural lantibiotics with potentially interesting biological activities. ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM058822-07
Application #
7107989
Study Section
Bio-Organic and Natural Products Chemistry Study Section (BNP)
Program Officer
Jones, Warren
Project Start
1999-02-01
Project End
2008-07-31
Budget Start
2006-08-01
Budget End
2007-07-31
Support Year
7
Fiscal Year
2006
Total Cost
$257,482
Indirect Cost
Name
University of Illinois Urbana-Champaign
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
041544081
City
Champaign
State
IL
Country
United States
Zip Code
61820
Yang, Xiao; Lennard, Katherine R; He, Chang et al. (2018) A lanthipeptide library used to identify a protein-protein interaction inhibitor. Nat Chem Biol 14:375-380
Repka, Lindsay M; Hetrick, Kenton J; Chee, See Hyun et al. (2018) Characterization of Leader Peptide Binding During Catalysis by the Nisin Dehydratase NisB. J Am Chem Soc 140:4200-4203
An, Linna; Cogan, Dillon P; Navo, Claudio D et al. (2018) Substrate-assisted enzymatic formation of lysinoalanine in duramycin. Nat Chem Biol 14:928-933
Burkhart, Brandon J; Kakkar, Nidhi; Hudson, Graham A et al. (2017) Chimeric Leader Peptides for the Generation of Non-Natural Hybrid RiPP Products. ACS Cent Sci 3:629-638
Hetrick, Kenton J; van der Donk, Wilfred A (2017) Ribosomally synthesized and post-translationally modified peptide natural product discovery in the genomic era. Curr Opin Chem Biol 38:36-44
Thibodeaux, Christopher J; Wagoner, Joshua; Yu, Yi et al. (2016) Leader Peptide Establishes Dehydration Order, Promotes Efficiency, and Ensures Fidelity During Lacticin 481 Biosynthesis. J Am Chem Soc 138:6436-44
Zhao, Xiling; van der Donk, Wilfred A (2016) Structural Characterization and Bioactivity Analysis of the Two-Component Lantibiotic Flv System from a Ruminant Bacterium. Cell Chem Biol 23:246-256
Garg, Neha; Goto, Yuki; Chen, Ting et al. (2016) Characterization of the stereochemical configuration of lanthionines formed by the lanthipeptide synthetase GeoM. Biopolymers 106:834-842
Walker, Mark C; van der Donk, Wilfred A (2016) The many roles of glutamate in metabolism. J Ind Microbiol Biotechnol 43:419-30
Tang, Weixin; Thibodeaux, Gabrielle N; van der Donk, Wilfred A (2016) The Enterococcal Cytolysin Synthetase Coevolves with Substrate for Stereoselective Lanthionine Synthesis. ACS Chem Biol 11:2438-46

Showing the most recent 10 out of 112 publications