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Structural basis for the high specificity of a Trypanosoma congolense immunoassay targeting glycosomal aldolase.

PLoS Negl Trop Dis. 2017; 
Pinto J,, Odongo S, Lee F, Gaspariunaite V, Muyldermans S, Magez S,,, Sterckx YG,.
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Gene Synthesis … The TcoALD A77E , TcoALD L106Y , and TcoALD A77E/L106Y mutants were generated by modifying the TcoALD WT sequence. Synthesis and cloning of the mutant sequences was outsourced to a commercial company (GenScript) … Get A Quote

摘要

Animal African trypanosomosis (AAT) is a neglected tropical disease which imposes a heavy burden on the livestock industry in Sub-Saharan Africa. Its causative agents are Trypanosoma parasites, with T. congolense and T. vivax being responsible for the majority of the cases. Recently, we identified a Nanobody (Nb474) that was employed to develop a homologous sandwich ELISA targeting T. congolense fructose-1,6-bisphosphate aldolase (TcoALD). Despite the high sequence identity between trypanosomatid aldolases, the Nb474-based immunoassay is highly specific for T. congolense detection. The results presented in this paper yield insights into the molecular principles underlying the assay's high specificity.,The struc... More

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