Literature DB >> 28889977

Novel Organelles with Elements of Bacterial and Eukaryotic Secretion Systems Weaponize Parasites of Drosophila.

Mary Ellen Heavner1, Johnny Ramroop2, Gwenaelle Gueguen3, Girish Ramrattan4, Georgia Dolios5, Michael Scarpati6, Jonathan Kwiat7, Sharmila Bhattacharya8, Rong Wang5, Shaneen Singh9, Shubha Govind10.   

Abstract

The evolutionary success of parasitoid wasps, a highly diverse group of insects widely used in biocontrol, depends on a variety of life history strategies in conflict with those of their hosts [1]. Drosophila melanogaster is a natural host of parasitic wasps of the genus Leptopilina. Attack by L. boulardi (Lb), a specialist wasp to flies of the melanogaster group, activates NF-κB-mediated humoral and cellular immunity. Inflammatory blood cells mobilize and encapsulate Lb eggs and embryos [2-5]. L. heterotoma (Lh), a generalist wasp, kills larval blood cells and actively suppresses immune responses. Spiked virus-like particles (VLPs) in wasp venom have clearly been linked to wasps' successful parasitism of Drosophila [6], but the composition of VLPs and their biotic nature have remained mysterious. Our proteomics studies reveal that VLPs lack viral coat proteins but possess a pharmacopoeia of (1) the eukaryotic vesicular transport system, (2) immunity, and (3) previously unknown proteins. These novel proteins distinguish Lh from Lb VLPs; notably, some proteins specific to Lh VLPs possess sequence similarities with bacterial secretion system proteins. Structure-informed analyses of an abundant Lh VLP surface and spike-tip protein, p40, reveal similarities to the needle-tip invasin proteins SipD and IpaD of Gram-negative bacterial type-3 secretion systems that breach immune barriers and deliver virulence factors into mammalian cells. Our studies suggest that Lh VLPs represent a new class of extracellular organelles and share pathways for protein delivery with both eukaryotic microvesicles and bacterial surface secretion systems. Given their mixed prokaryotic and eukaryotic properties, we propose the term mixed-strategy extracellular vesicle (MSEV) to replace VLP.
Copyright © 2017 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Drosophila; T3 secretion system; hemocytes; immune suppression; mixed-strategy extracellular vesicles; parasitoid wasps; proteomics; secretion systems; venom; virus-like particles

Mesh:

Year:  2017        PMID: 28889977      PMCID: PMC5659752          DOI: 10.1016/j.cub.2017.08.019

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  85 in total

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Journal:  Biochim Biophys Acta Mol Cell Biol Lipids       Date:  2020-05-11       Impact factor: 5.228

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Journal:  Front Physiol       Date:  2019-10-11       Impact factor: 4.566

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6.  A parasitoid wasp of Drosophila employs preemptive and reactive strategies to deplete its host's blood cells.

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8.  Immune Suppressive Extracellular Vesicle Proteins of Leptopilina heterotoma Are Encoded in the Wasp Genome.

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9.  The Presence of Ancient Core Genes Reveals Endogenization from Diverse Viral Ancestors in Parasitoid Wasps.

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