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Bracovirus Sneaks Into Apoptotic Bodies Transmitting Immunosuppressive Signaling Driven by Integration-Mediated eIF5A Hypusination

A typical characteristics of polydnavirus (PDV) infection is a persistent immunosuppression, governed by the viral integration and expression of virulence genes. Recently, activation of caspase-3 by Microplitis bicoloratus bracovirus (MbBV) to cleave Innexins, gap junction proteins, has been highlig...

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Autores principales: Zhou, Gui-Fang, Chen, Chang-Xu, Cai, Qiu-Chen, Yan, Xiang, Peng, Nan-Nan, Li, Xing-Cheng, Cui, Ji-Hui, Han, Yun-Feng, Zhang, Qi, Meng, Jiang-Hui, Tang, Hong-Mei, Cai, Chen-hui, Long, Jin, Luo, Kai-Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9156803/
https://www.ncbi.nlm.nih.gov/pubmed/35664011
http://dx.doi.org/10.3389/fimmu.2022.901593
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author Zhou, Gui-Fang
Chen, Chang-Xu
Cai, Qiu-Chen
Yan, Xiang
Peng, Nan-Nan
Li, Xing-Cheng
Cui, Ji-Hui
Han, Yun-Feng
Zhang, Qi
Meng, Jiang-Hui
Tang, Hong-Mei
Cai, Chen-hui
Long, Jin
Luo, Kai-Jun
author_facet Zhou, Gui-Fang
Chen, Chang-Xu
Cai, Qiu-Chen
Yan, Xiang
Peng, Nan-Nan
Li, Xing-Cheng
Cui, Ji-Hui
Han, Yun-Feng
Zhang, Qi
Meng, Jiang-Hui
Tang, Hong-Mei
Cai, Chen-hui
Long, Jin
Luo, Kai-Jun
author_sort Zhou, Gui-Fang
collection PubMed
description A typical characteristics of polydnavirus (PDV) infection is a persistent immunosuppression, governed by the viral integration and expression of virulence genes. Recently, activation of caspase-3 by Microplitis bicoloratus bracovirus (MbBV) to cleave Innexins, gap junction proteins, has been highlighted, further promoting apoptotic cell disassembly and apoptotic body (AB) formation. However, whether ABs play a role in immune suppression remains to be determined. Herein, we show that ABs transmitted immunosuppressive signaling, causing recipient cells to undergo apoptosis and dismigration. Furthermore, the insertion of viral–host integrated motif sites damaged the host genome, stimulating eIF5A nucleocytoplasmic transport and activating the eIF5A-hypusination translation pathway. This pathway specifically translates apoptosis-related host proteins, such as P53, CypA, CypD, and CypJ, to drive cellular apoptosis owing to broken dsDNA. Furthermore, translated viral proteins, such Vank86, 92, and 101, known to complex with transcription factor Dip3, positively regulated DHYS and DOHH transcription maintaining the activation of the eIF5A-hypusination. Mechanistically, MbBV-mediated extracellular vesicles contained inserted viral fragments that re-integrated into recipients, potentially via the homologous recombinant repair system. Meanwhile, this stimulation regulated activated caspase-3 levels via PI3K/AKT 308 and 473 dephosphorylation to promote apoptosis of granulocyte-like recipients Sf9 cell; maintaining PI3K/AKT 473 phosphorylation and 308 dephosphorylation inhibited caspase-3 activation leading to dismigration of plasmatocyte-like recipient High Five cells. Together, our results suggest that integration-mediated eIF5A hypusination drives extracellular vesicles for continuous immunosuppression.
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spelling pubmed-91568032022-06-02 Bracovirus Sneaks Into Apoptotic Bodies Transmitting Immunosuppressive Signaling Driven by Integration-Mediated eIF5A Hypusination Zhou, Gui-Fang Chen, Chang-Xu Cai, Qiu-Chen Yan, Xiang Peng, Nan-Nan Li, Xing-Cheng Cui, Ji-Hui Han, Yun-Feng Zhang, Qi Meng, Jiang-Hui Tang, Hong-Mei Cai, Chen-hui Long, Jin Luo, Kai-Jun Front Immunol Immunology A typical characteristics of polydnavirus (PDV) infection is a persistent immunosuppression, governed by the viral integration and expression of virulence genes. Recently, activation of caspase-3 by Microplitis bicoloratus bracovirus (MbBV) to cleave Innexins, gap junction proteins, has been highlighted, further promoting apoptotic cell disassembly and apoptotic body (AB) formation. However, whether ABs play a role in immune suppression remains to be determined. Herein, we show that ABs transmitted immunosuppressive signaling, causing recipient cells to undergo apoptosis and dismigration. Furthermore, the insertion of viral–host integrated motif sites damaged the host genome, stimulating eIF5A nucleocytoplasmic transport and activating the eIF5A-hypusination translation pathway. This pathway specifically translates apoptosis-related host proteins, such as P53, CypA, CypD, and CypJ, to drive cellular apoptosis owing to broken dsDNA. Furthermore, translated viral proteins, such Vank86, 92, and 101, known to complex with transcription factor Dip3, positively regulated DHYS and DOHH transcription maintaining the activation of the eIF5A-hypusination. Mechanistically, MbBV-mediated extracellular vesicles contained inserted viral fragments that re-integrated into recipients, potentially via the homologous recombinant repair system. Meanwhile, this stimulation regulated activated caspase-3 levels via PI3K/AKT 308 and 473 dephosphorylation to promote apoptosis of granulocyte-like recipients Sf9 cell; maintaining PI3K/AKT 473 phosphorylation and 308 dephosphorylation inhibited caspase-3 activation leading to dismigration of plasmatocyte-like recipient High Five cells. Together, our results suggest that integration-mediated eIF5A hypusination drives extracellular vesicles for continuous immunosuppression. Frontiers Media S.A. 2022-05-17 /pmc/articles/PMC9156803/ /pubmed/35664011 http://dx.doi.org/10.3389/fimmu.2022.901593 Text en Copyright © 2022 Zhou, Chen, Cai, Yan, Peng, Li, Cui, Han, Zhang, Meng, Tang, Cai, Long and Luo https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Zhou, Gui-Fang
Chen, Chang-Xu
Cai, Qiu-Chen
Yan, Xiang
Peng, Nan-Nan
Li, Xing-Cheng
Cui, Ji-Hui
Han, Yun-Feng
Zhang, Qi
Meng, Jiang-Hui
Tang, Hong-Mei
Cai, Chen-hui
Long, Jin
Luo, Kai-Jun
Bracovirus Sneaks Into Apoptotic Bodies Transmitting Immunosuppressive Signaling Driven by Integration-Mediated eIF5A Hypusination
title Bracovirus Sneaks Into Apoptotic Bodies Transmitting Immunosuppressive Signaling Driven by Integration-Mediated eIF5A Hypusination
title_full Bracovirus Sneaks Into Apoptotic Bodies Transmitting Immunosuppressive Signaling Driven by Integration-Mediated eIF5A Hypusination
title_fullStr Bracovirus Sneaks Into Apoptotic Bodies Transmitting Immunosuppressive Signaling Driven by Integration-Mediated eIF5A Hypusination
title_full_unstemmed Bracovirus Sneaks Into Apoptotic Bodies Transmitting Immunosuppressive Signaling Driven by Integration-Mediated eIF5A Hypusination
title_short Bracovirus Sneaks Into Apoptotic Bodies Transmitting Immunosuppressive Signaling Driven by Integration-Mediated eIF5A Hypusination
title_sort bracovirus sneaks into apoptotic bodies transmitting immunosuppressive signaling driven by integration-mediated eif5a hypusination
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9156803/
https://www.ncbi.nlm.nih.gov/pubmed/35664011
http://dx.doi.org/10.3389/fimmu.2022.901593
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