Endocytosis is required for access of surface-bound cargo to the flagellar pocket of trypanosomes

Author:

Schichler DajaORCID,Spath Eva-Maria,Konle Antonia,Riegler Sina,Klein Alexandra,Seleznev Anna,Jung Sisco,Wuppermann Tim,Wetterich Noah,Borges AlyssaORCID,Meyer-Natus Elisabeth,Havlicek Katharina,Pérez Cabrera Sonia,Niedermüller Korbinian,Sajko SaraORCID,Dohn Maximilian,Malzer Xenia,Riemer Emily,Tumurbaatar Tuguldur,Djinovic-Carugo KristinaORCID,Dong GangORCID,Janzen Christian J.ORCID,Morriswood BrookeORCID

Abstract

AbstractAll endo- and exocytosis in the African trypanosome Trypanosoma brucei occurs at a single subdomain of the plasma membrane. This subdomain, the flagellar pocket, is a small vase-shaped invagination containing the root of the cell’s single flagellum. Several cytoskeleton-associated multiprotein complexes are coiled around the neck of the flagellar pocket on its cytoplasmic face. One of these, the hook complex, may affect macromolecule entry into the flagellar pocket lumen. In previous work, knockdown of the hook complex component TbMORN1 resulted in larger cargo being unable to enter the flagellar pocket. In this study, the hook complex component TbSmee1 was characterised in bloodstream form Trypanosoma brucei and was found to be essential for cell viability. TbSmee1 knockdown resulted in flagellar pocket enlargement, and impaired access to the pocket membrane by surface-bound cargo. Inhibition of endocytosis by knockdown of clathrin phenocopied TbSmee1 knockdown, suggesting that endocytic activity itself is a prerequisite for the entry of surface-bound cargo into the flagellar pocket.SummaryCharacterisation of the essential trypanosome protein TbSmee1 suggests that endocytosis is required for flagellar pocket access of surface-bound cargo

Publisher

Cold Spring Harbor Laboratory

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