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Life Sciences

Clemson University

2011

Trypanosoma brucei

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Lipid Metabolism In Trypanosoma Brucei: Molecular Characterization Of Fatty Acid Synthesis And Uptake, Patrick Vigueira Aug 2011

Lipid Metabolism In Trypanosoma Brucei: Molecular Characterization Of Fatty Acid Synthesis And Uptake, Patrick Vigueira

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My doctoral studies focused on the fatty acid metabolism of the deadly protozoan parasite, Trypanosoma brucei. Fatty acid metabolism in T. brucei can be broadly divided into two pathways, synthesis and uptake. In Chapters 2-4 I describe experiments investigating the parasite's fatty acid synthesis pathway. Chapter 2 contains the initial characterization of acetyl-CoA carboxylase (ACC) in T. brucei. Knockdown of TbACC by RNA interference (RNAi) reduced parasite virulence in a mouse model, suggesting that TbACC has the potential to be utilized as a drug target. Chapters 3 and 4 explore the effects of two known ACC inhibitors, the …


Regulation Of Trypanosoma Brucei Hexokinase 1 And 2 On Multiple Levels: Transcript Abundance, Protein Expression And Enzyme Activity, Heidi Dodson May 2011

Regulation Of Trypanosoma Brucei Hexokinase 1 And 2 On Multiple Levels: Transcript Abundance, Protein Expression And Enzyme Activity, Heidi Dodson

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Trypanosoma brucei, a unicellular eukaryotic parasite, is the causative agent of African sleeping sickness in sub-Saharan Africa. The parasite encounters two main environments as it progresses through its life cycle: the tsetse fly and the mammalian
bloodstream. Nutrient availability is distinct in the two environments, requiring the parasite to utilize diverse metabolic pathways to efficiently produce ATP for survival. Bloodstream form parasites (BSF), residing in a glucose rich environment, rely solely on
glycolysis for energy, while procyclic form (PF) parasites metabolize readily available proline and threonine in addition to glucose.
T. brucei expresses two hexokinases, the first enzyme in the …