Fatty acid desaturases produce essential mono- and polyunsaturated lipids and thus help to maintain and control the function of cellular membranes. Diseases associated with changes in lipid composition include obesity, diabetes, hypertension, cardiovascular disease, immune disorders, skin diseases, and others. Desaturases also help to produce the mycolic acid coating that protects the human pathogen Mycobacterium tuberculosis from macrophage attack, dessication, water-soluble antibiotics, and other ameliorative agents. Despite the importance of unsaturated fatty acids in health and disease, many molecular details of desaturase reactions are poorly understood, including the reactivity of the required diiron centers, the contributions of protein interactions to catalysis, the nature of substrate intermediates formed during the reaction, and the mechanism(s) and consequences of reaction. Our long-term goal is to provide a more complete understanding of this essential catalytic process by study of representative soluble and integral membrane desaturases. A combination of biochemical, biophysical, kinetic, chemical and enzyme synthetic approaches will be used.
The Aim I studies will establish a program for study of the structure and function of desaturases required for mycolic acid biosynthesis.
The Aim II studies address how desaturases interact with their required protein and acyl chain partners to generate position-specific catalysis, which is a hallmark of these enzyme reactions.
The Aim III studies focus on the mechanism of electron transfer and redox control in desaturase reactions. Since all desaturases require reducing equivalents for catalysis, this work is of fundamental importance to understanding function.
The Aim I V studies will investigate the mechanism of covalent inactivation of stearoyl-CoA desaturase by cyclopropenyl fatty acids. The potential of using related molecules to inactivate other position-specific desaturases will be determined.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM050853-11
Application #
6828311
Study Section
Metallobiochemistry Study Section (BMT)
Program Officer
Preusch, Peter C
Project Start
1994-12-01
Project End
2007-11-30
Budget Start
2004-12-01
Budget End
2005-11-30
Support Year
11
Fiscal Year
2005
Total Cost
$270,567
Indirect Cost
Name
University of Wisconsin Madison
Department
Biochemistry
Type
Schools of Earth Sciences/Natur
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Schmitt, Samantha K; Trebatoski, David J; Krutty, John D et al. (2016) Peptide Conjugation to a Polymer Coating via Native Chemical Ligation of Azlactones for Cell Culture. Biomacromolecules 17:1040-7
Bai, Yonghong; McCoy, Jason G; Levin, Elena J et al. (2015) X-ray structure of a mammalian stearoyl-CoA desaturase. Nature 524:252-6
Gardner, Jessica D; Pierce, Brad S; Fox, Brian G et al. (2010) Spectroscopic and computational characterization of substrate-bound mouse cysteine dioxygenase: nature of the ferrous and ferric cysteine adducts and mechanistic implications. Biochemistry 49:6033-41
Zornetzer, Gregory A; Tanem, Justinn; Fox, Brian G et al. (2010) The length of the bound fatty acid influences the dynamics of the acyl carrier protein and the stability of the thioester bond. Biochemistry 49:470-7
Sevova, Elitza S; Goren, Michael A; Schwartz, Kevin J et al. (2010) Cell-free synthesis and functional characterization of sphingolipid synthases from parasitic trypanosomatid protozoa. J Biol Chem 285:20580-7
Goren, Michael A; Nozawa, Akira; Makino, Shin-ichi et al. (2009) Cell-free translation of integral membrane proteins into unilamelar liposomes. Methods Enzymol 463:647-73
Chang, Yong; Mead, David; Dhodda, Vinay et al. (2009) One-plasmid tunable coexpression for mycobacterial protein-protein interaction studies. Protein Sci 18:2316-25
Sobrado, Pablo; Goren, Michael A; James, Declan et al. (2008) A Protein Structure Initiative approach to expression, purification, and in situ delivery of human cytochrome b5 to membrane vesicles. Protein Expr Purif 58:229-41
Chang, Yong; Wesenberg, Gary E; Bingman, Craig A et al. (2008) In vivo inactivation of the mycobacterial integral membrane stearoyl coenzyme A desaturase DesA3 by a C-terminus-specific degradation process. J Bacteriol 190:6686-96
Goren, Michael A; Fox, Brian G (2008) Wheat germ cell-free translation, purification, and assembly of a functional human stearoyl-CoA desaturase complex. Protein Expr Purif 62:171-8

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