Malaria is one of the leading causes of mortality in the world. Current therapy for malaria is limited by drug resistance. Toxoplasma gondii is found worldwide and causes devastating eye disease and encephalitis. Current therapy for toxoplasmosis is poorly tolerated and does not eradicate infection from its host. Veterans are exposed to these infections during their military service and new treatments would greatly improve veterans' health. Dr. Doggett and his colleagues have developed new drugs, endochin like quinolones (ELQ) that are highly effective against malaria and T. gondii. He has chosen ELQ-316 as a lead drug because it is orally available, non-toxic and highly effective. Dr. Doggett's preliminary studies in T. gondii and Saccharomyces cerevisiae suggest that ELQs inhibit the mitochondrial cytochrome bc1 complex (cyt bc1). Dr. Doggett will test the hypothesis that ELQ-316 inhibits cyt bc1 and characterize how ELQ-316 interacts with the cyt bc1. He will also test if inhibiting both active sites of cyt bc reduces P. falciparum's ability to develop drug resistance. Dr. Doggett will test this hypothesis by measuring the rate of resistance against the combination of ELQ-316 with atovaquone and the rate of resistance of ELQ-316 against a P. falciparum clone that has atovaquone resistance. If mutations occur in both cyt bc1 active sites, he will measure the catalytic activity of the enzyme. Dr. Doggett will optimize the administration of ELQ-316 by finding synergistic combinations of ELQ-316 with clinically used drugs against toxoplasmosis and malaria, determining the pharmacokinetics of ELQ-316 orally and transdermally, and developing an ELQ-316 prodrug. Dr. Doggett is an infectious disease physician at Oregon Health & Sciences University and the Portland VA Medical Center. He is specifically interested in new treatments for neglected tropical diseases that affect veterans. He has carried out research in Dr. Mike Riscoe's lab investigating drug mechanism of action and drug resistance in protozoan pathogens. Dr. Doggett has developed proficiency in the biochemical and molecular methods that are needed for his current research plan. The VA CDA-2 award will provide Dr. Doggett further training in drug mechanism and new training in pharmacokinetics, drug design and computer based molecular modeling. As a part of a robust training plan, Dr. Doggett has selected a panel of senior scientists with expertise in molecular parasitology, T. gondii, Plasmodia, preclinical drug development and S. cerevesiae as a model system. This panel is experienced in mentoring early investigators and will meet with Dr. Doggett formally every 6 months. The panel will provide advice regarding experiments, publications and career development. In addition, Dr. Doggett will attend the Woods Hole molecular parasitology course, attend science courses at OHSU and present his research at conferences. This award will culminate in the establishment of Dr. Doggett's independently funded lab devoted to anti-protozoan drug discovery for veterans and his infectious disease career as a physician with parasitology expertise devoted to the care of veterans.

Agency
National Institute of Health (NIH)
Institute
Veterans Affairs (VA)
Type
Veterans Administration (IK2)
Project #
5IK2BX002440-04
Application #
9240565
Study Section
Infectious Diseases B (INFB)
Project Start
2014-01-01
Project End
2018-12-31
Budget Start
2017-01-01
Budget End
2017-12-31
Support Year
4
Fiscal Year
2017
Total Cost
Indirect Cost
Name
Portland VA Medical Center
Department
Type
Independent Hospitals
DUNS #
089461255
City
Portland
State
OR
Country
United States
Zip Code
97239
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Kirkman, Laura A; Zhan, Wenhu; Visone, Joseph et al. (2018) Antimalarial proteasome inhibitor reveals collateral sensitivity from intersubunit interactions and fitness cost of resistance. Proc Natl Acad Sci U S A 115:E6863-E6870
Van Voorhis, Wesley C; Doggett, J Stone; Parsons, Marilyn et al. (2017) Extended-spectrum antiprotozoal bumped kinase inhibitors: A review. Exp Parasitol 180:71-83
Alday, P Holland; Bruzual, Igor; Nilsen, Aaron et al. (2017) Genetic Evidence for Cytochrome b Qi Site Inhibition by 4(1H)-Quinolone-3-Diarylethers and Antimycin in Toxoplasma gondii. Antimicrob Agents Chemother 61:
Alday, P Holland; Doggett, Joseph Stone (2017) Drugs in development for toxoplasmosis: advances, challenges, and current status. Drug Des Devel Ther 11:273-293
Troxell, Megan L; Gordon, Nicole T; Doggett, J Stone et al. (2016) Cystic Neutrophilic Granulomatous Mastitis: ?Association With Gram-Positive Bacilli and Corynebacterium. Am J Clin Pathol 145:635-45
Vidadala, Rama Subba Rao; Rivas, Kasey L; Ojo, Kayode K et al. (2016) Development of an Orally Available and Central Nervous System (CNS) Penetrant Toxoplasma gondii Calcium-Dependent Protein Kinase 1 (TgCDPK1) Inhibitor with Minimal Human Ether-a-go-go-Related Gene (hERG) Activity for the Treatment of Toxoplasmosis. J Med Chem 59:6531-46
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Huang, Rui-Yun; Xu, Qin-Juan; Lin, Li-Rong (2013) 1-[4-(Di-methyl-amino)-benzyl-idene]-4-o-tolyl-thio-semicarbazide. Acta Crystallogr Sect E Struct Rep Online 69:o906-7