Title |
Oxidative folding of conotoxins: chemical and biological developments to efficiency of production of short, cysteine-rich peptides |
Publication Type |
dissertation |
School or College |
College of Pharmacy |
Department |
Medicinal Chemistry |
Author |
Steiner, Andrew M. |
Date |
2013-05 |
Description |
Oxidative folding is one of the key challenges hampering the development of peptidebased compounds as therapeutics. While disulde-rich peptides are often thought to be more appealing drug lead compounds because of their stable, highly-crosslinked structure, their oxidative folding to the correct disulde connectivity is often dicult, and is optimized in a peptide-specic way. This work advanced knowledge of chemical and biological means to improve oxidative folding of conotoxins. Herein I present a generalized folding protocol suitable for folding diverse disulde-rich peptides. I also show that the incorporation of selenocysteines to replace a disulde bridge with a diselenide eectively adds an intramolecular oxidative folding catalyst, where this bridge had previously been assumed to be static, with any folding improvements being a consequence of conformational eects. These are followed by a discussion of oxidative folding mechanisms in vivo, relating energy expenditure to directing disulde isomerization to the desired connectivity, as well as a novel analysis tool to consider the codon conservation of the cysteine residues that comprise the disulde scaold. This work represents signicant improvements to chemical strategies to eciently produce disulde-rich peptides and genetic analyses towards a better understanding of the role oxidative folding plays in the evolution of disulde scaolds of cysteine-rich peptides. |
Type |
Text |
Publisher |
University of Utah |
Subject MESH |
Oxidation-Reduction; Energy Metabolism; Kinetics; Binding Sites; Protein Conformation; Protein Folding; Disulfides; Protein Precursors; Peptides; Cysteine; Codon; Conotoxins; Disulfide Isomers |
Dissertation Institution |
University of Utah |
Dissertation Name |
Doctor of Philosophy |
Language |
eng |
Relation is Version of |
Digital reproduction of Oxidative Folding of Conotoxins: Chemical and Biological Developments to Efficiency of Production of Short, Cysteine-Rich Peptides. Print version available at J. Willard Marriott Library Special Collections. |
Rights Management |
Copyright© Andrew M. Steiner 2013 |
Format |
application/pdf |
Format Medium |
application/pdf |
Format Extent |
22,082,428 bytes |
Source |
Original in Marriott Library Special Collections, QP6.5 2013.S84 |
ARK |
ark:/87278/s6r248mx |
Setname |
ir_etd |
ID |
196408 |
Reference URL |
https://collections.lib.utah.edu/ark:/87278/s6r248mx |