Publication | Open Access
Assembly Mechanism of Trypanosoma brucei BILBO1, a Multidomain Cytoskeletal Protein
18
Citations
29
References
2014
Year
Protein AssemblyAfrican TrypanosomiasisProtein FoldingTrypanosoma Brucei Bilbo1Natural SciencesLeucine ZipperParasitic ProtozoaMolecular BiologyAdjacent Leucine ZippersCytoskeletonProtein TransportIntracellular TraffickingCellular StructureMedicineCell BiologyStructural BiologyMulti-protein Assembly
Trypanosoma brucei BILBO1 (TbBILBO1) is an essential component of the flagellar pocket collar of trypanosomes. We recently reported the high resolution structure of the N-terminal domain of TbBILBO1. Here, we provide further structural dissections of its other three constituent domains: EF-hand, coiled coil, and leucine zipper. We found that the EF-hand changes its conformation upon calcium binding, the central coiled coil forms an antiparallel dimer, and the C-terminal leucine zipper appears to contain targeting information. Furthermore, interdimer interactions between adjacent leucine zippers allow TbBILBO1 to form extended filaments in vitro. These filaments were additionally found to condense into fibers through lateral interactions. Based on these experimental data, we propose a mechanism for TbBILBO1 assembly at the flagellar pocket collar.
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