Počet záznamů: 1  

Combined nanometric and phylogenetic analysis of unique endocytic compartments in Giardia lamblia sheds light on the evolution of endocytosis in Metamonada

  1. 1.
    0561828 - BC 2023 RIV GB eng J - Článek v odborném periodiku
    Santos, R. - Astvaldsson, A. - Pipaliya, S. - Zumthor, J.P. - Dacks, Joel Bryan - Svard, S. - Hehl, A. B. - Faso, C.
    Combined nanometric and phylogenetic analysis of unique endocytic compartments in Giardia lamblia sheds light on the evolution of endocytosis in Metamonada.
    BMC BIOLOGY. Roč. 20, č. 1 (2022), č. článku 206. E-ISSN 1741-7007
    Institucionální podpora: RVO:60077344
    Klíčová slova: Endocytosis * Super-resolution microscopy (SRM) * Volumetric electron microscopy * Peripheral endocytic compartments (PECs) * Convergent evolution * Metamonada * Giardia * Tritrichomonas * Spironucleus * Peripheral vacuoles
    Obor OECD: Biology (theoretical, mathematical, thermal, cryobiology, biological rhythm), Evolutionary biology
    Impakt faktor: 5.4, rok: 2022
    Způsob publikování: Open access
    https://bmcbiol.biomedcentral.com/articles/10.1186/s12915-022-01402-3

    Background Giardia lamblia, a parasitic protist of the Metamonada supergroup, has evolved one of the most diverged endocytic compartment systems investigated so far. Peripheral endocytic compartments, currently known as peripheral vesicles or vacuoles (PVs), perform bulk uptake of fluid phase material which is then digested and sorted either to the cell cytosol or back to the extracellular space. Results Here, we present a quantitative morphological characterization of these organelles using volumetric electron microscopy and super-resolution microscopy (SRM). We defined a morphological classification for the heterogenous population of PVs and performed a comparative analysis of PVs and endosome-like organelles in representatives of phylogenetically related taxa, Spironucleus spp. and Tritrichomonas foetus. To investigate the as-yet insufficiently understood connection between PVs and clathrin assemblies in G. lamblia, we further performed an in-depth search for two key elements of the endocytic machinery, clathrin heavy chain (CHC) and clathrin light chain (CLC), across different lineages in Metamonada. Our data point to the loss of a bona fide CLC in the last Fornicata common ancestor (LFCA) with the emergence of a protein analogous to CLC (GlACLC) in the Giardia genus. Finally, the location of clathrin in the various compartments was quantified. Conclusions Taken together, this provides the first comprehensive nanometric view of Giardia's endocytic system architecture and sheds light on the evolution of GlACLC analogues in the Fornicata supergroup and, specific to Giardia, as a possible adaptation to the formation and maintenance of stable clathrin assemblies at PVs.
    Trvalý link: https://hdl.handle.net/11104/0340276

     
     
Počet záznamů: 1  

  Tyto stránky využívají soubory cookies, které usnadňují jejich prohlížení. Další informace o tom jak používáme cookies.