Article ID Journal Published Year Pages File Type
1982424 Insect Biochemistry and Molecular Biology 2011 10 Pages PDF
Abstract

Triosephosphate isomerase (TIM) is an enzyme with a role in glycolysis and gluconeogenesis by catalyzing the interconversion between glyceraldehyde 3-phosphate and dihydroxyacetone phosphate. This enzyme has been used as a target in endoparasite drug development. In this work we cloned, expressed, purified and studied kinetic and structural characteristics of TIM from tick embryos, Rhipicephalus (Boophilus) microplus (BmTIM). The Km and Vmax of the recombinant BmTIM with glyceraldehyde 3-phosphate as substrate, were 0.47 mM and 6031 μmol min−1 mg protein−1, respectively. The resolution of the diffracted crystal was estimated to be 2.4 Å and the overall data showed that BmTIM is similar to other reported dimeric TIMs. However, we found that, in comparison to other TIMs, BmTIM has the highest content of cysteine residues (nine cysteine residues per monomer). Only two cysteines could make disulfide bonds in monomers of BmTIM. Furthermore, BmTIM was highly sensitive to the action of the thiol reagents dithionitrobenzoic acid and methyl methane thiosulfonate, suggesting that there are five cysteines exposed in each dimer and that these residues could be employed in the development of species-specific inhibitors.

Graphical abstractFigure optionsDownload full-size imageDownload high-quality image (204 K)Download as PowerPoint slideHighlights► Recombinant BmTIM was obtained from cattle tick Rhipicephalus microplus embryos. ► Biochemistry, structure and susceptibility to sulphydryl deritivatizing agents were determined. ► CYS86 remains accessible after dimerization and contributes for its stabilization. ► rBmTIM Enzyme activity and transcription levels were correlated during tick embryogenesis. ► Non-conserved CYS residues are potential targets for future development of species-specific drugs.

Related Topics
Life Sciences Agricultural and Biological Sciences Insect Science
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