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      Parasitoid wasp venom vesicles (venosomes) enter Drosophila melanogaster lamellocytes through a flotillin/lipid raft-dependent endocytic pathway

      research-article
      , ,
      Virulence
      Taylor & Francis
      Lamellocytes, endosomes, lysosomes, rafts, Drosophila melanogaster, venosomes, parasitoid wasps, confocal microscopy

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          ABSTRACT

          Venosomes are extracellular vesicles found in the venom of Leptopilina endoparasitoids wasps, which transport and target virulence factors to impair the parasitoid egg encapsulation by the lamellocytes of their Drosophila melanogaster host larva. Using the co-immunolocalization of fluorescent L. boulardi venosomes and one of the putative-transported virulence factors, LbGAP, with known markers of cellular endocytosis, we show that venosomes endocytosis by lamellocytes is not a process dependent on clathrin or macropinocytosis and internalization seems to bypass the early endosomal compartment Rab5. After internalization, LbGAP colocalizes strongly with flotillin-1 and the GPI-anchored protein Atilla/L1 (a lamellocyte surface marker) suggesting that entry occurs via a flotillin/lipid raft-dependent pathway. Once internalized, venosomes reach all intracellular compartments, including late and recycling endosomes, lysosomes, and the endoplasmic reticulum network. Venosomes therefore enter their target cells by a specific mechanism and the virulence factors are widely distributed in the lamellocytes’ compartments to impair their functions.

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          Most cited references56

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          Rab GTPases as coordinators of vesicle traffic.

          Membrane trafficking between organelles by vesiculotubular carriers is fundamental to the existence of eukaryotic cells. Central in ensuring that cargoes are delivered to their correct destinations are the Rab GTPases, a large family of small GTPases that control membrane identity and vesicle budding, uncoating, motility and fusion through the recruitment of effector proteins, such as sorting adaptors, tethering factors, kinases, phosphatases and motors. Crosstalk between multiple Rab GTPases through shared effectors, or through effectors that recruit selective Rab activators, ensures the spatiotemporal regulation of vesicle traffic. Functional impairments of Rab pathways are associated with diseases, such as immunodeficiencies, cancer and neurological disorders.
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            Mechanisms of clathrin-mediated endocytosis

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              Mechanisms of endocytosis.

              Endocytic mechanisms control the lipid and protein composition of the plasma membrane, thereby regulating how cells interact with their environments. Here, we review what is known about mammalian endocytic mechanisms, with focus on the cellular proteins that control these events. We discuss the well-studied clathrin-mediated endocytic mechanisms and dissect endocytic pathways that proceed independently of clathrin. These clathrin-independent pathways include the CLIC/GEEC endocytic pathway, arf6-dependent endocytosis, flotillin-dependent endocytosis, macropinocytosis, circular doral ruffles, phagocytosis, and trans-endocytosis. We also critically review the role of caveolae and caveolin1 in endocytosis. We highlight the roles of lipids, membrane curvature-modulating proteins, small G proteins, actin, and dynamin in endocytic pathways. We discuss the functional relevance of distinct endocytic pathways and emphasize the importance of studying these pathways to understand human disease processes.
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                Author and article information

                Journal
                Virulence
                Virulence
                Virulence
                Taylor & Francis
                2150-5594
                2150-5608
                31 October 2020
                2020
                31 October 2020
                : 11
                : 1
                : 1512-1521
                Affiliations
                [0001]Université Côte d’Azur, INRAE, CNRS, ISA; , France
                Author notes
                CONTACT Jean-Luc Gatti jean-luc.gatti@ 123456inrae.fr
                [£]

                Present address: School of Life Sciences, Nanchang University, Nanchang, China 330031.

                [$]

                last coauthors

                Author information
                https://orcid.org/0000-0001-7683-718X
                Article
                1838116
                10.1080/21505594.2020.1838116
                7605353
                33135553
                318b197f-6286-4af0-aead-934128951c8d
                © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.

                This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                Page count
                Figures: 5, References: 56, Pages: 10
                Categories
                Research Article
                Research Paper

                Infectious disease & Microbiology
                lamellocytes,endosomes,lysosomes,rafts,drosophila melanogaster,venosomes,parasitoid wasps,confocal microscopy

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