DDX3X Is Hijacked by Snakehead Vesiculovirus Phosphoprotein To Facilitate Virus Replication via Stabilization of the Phosphoprotein.
DDX3X
phosphoprotein
replication
rhabdovirus
snakehead vesiculovirus
Journal
Journal of virology
ISSN: 1098-5514
Titre abrégé: J Virol
Pays: United States
ID NLM: 0113724
Informations de publication
Date de publication:
28 02 2023
28 02 2023
Historique:
pubmed:
7
2
2023
medline:
3
3
2023
entrez:
6
2
2023
Statut:
ppublish
Résumé
Asp-Glu-Ala-Asp (DEAD) box helicase 3 X-linked (DDX3X) plays important regulatory roles in the replication of many viruses. However, the role of DDX3X in rhabdovirus replication has seldomly been investigated. In this study, snakehead vesiculovirus (SHVV), a kind of fish rhabdovirus, was used to study the role of DDX3X in rhabdovirus replication. DDX3X was identified as an interacting partner of SHVV phosphoprotein (P). The expression level of DDX3X was increased at an early stage of SHVV infection and then decreased to a normal level at a later infection stage. Overexpression of DDX3X promoted, while knockdown of DDX3X using specific small interfering RNAs (siRNAs) suppressed, SHVV replication, indicating that DDX3X was a proviral factor for SHVV replication. The N-terminal and core domains of DDX3X (DDX3X-N and DDX3X-Core) were determined to be the regions responsible for its interaction with SHVV P. Overexpression of DDX3X-Core suppressed SHVV replication by competitively disrupting the interaction between full-length DDX3X and SHVV P, suggesting that full-length DDX3X-P interaction was required for SHVV replication. Mechanistically, DDX3X-mediated promotion of SHVV replication was due not to inhibition of interferon expression but to maintenance of the stability of SHVV P to avoid autophagy-lysosome-dependent degradation. Collectively, our data suggest that DDX3X is hijacked by SHVV P to ensure effective replication of SHVV, which suggests an important anti-SHVV target. This study will help elucidate the role of DDX3X in regulating the replication of rhabdoviruses.
Identifiants
pubmed: 36744958
doi: 10.1128/jvi.00035-23
pmc: PMC9972964
doi:
Substances chimiques
DEAD-box RNA Helicases
EC 3.6.4.13
RNA, Small Interfering
0
Phosphoproteins
0
Viral Proteins
0
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
e0003523Références
EMBO J. 2008 Aug 6;27(15):2135-46
pubmed: 18583960
Antiviral Res. 2021 Jan;185:104994
pubmed: 33301755
FEBS J. 2022 Feb;289(4):1043-1061
pubmed: 34606682
J Virol. 2009 Jun;83(11):5815-24
pubmed: 19297497
J Virol. 2016 Jan 20;90(7):3661-75
pubmed: 26792746
Fish Shellfish Immunol. 2006 Jul;21(1):42-59
pubmed: 16426862
Hum Mol Genet. 2000 May 1;9(8):1161-9
pubmed: 10767340
Front Genet. 2014 Dec 05;5:423
pubmed: 25538732
EMBO Mol Med. 2015 Mar 27;7(5):648-69
pubmed: 25820276
Molecules. 2020 Feb 24;25(4):
pubmed: 32102413
J Virol. 2017 Mar 29;91(8):
pubmed: 28148788
Science. 2013 Mar 22;339(6126):1436-41
pubmed: 23413191
J Virol. 2012 Nov;86(22):11977-90
pubmed: 22933270
RNA Biol. 2021 Apr;18(4):537-546
pubmed: 32940118
Hum Mol Genet. 2004 Oct 1;13(19):2333-41
pubmed: 15294876
Cancer Res. 2019 Feb 1;79(3):557-571
pubmed: 30563889
Curr Opin Chem Biol. 2011 Oct;15(5):636-42
pubmed: 21862383
Sci Rep. 2017 Aug 25;7(1):9411
pubmed: 28842590
Virology. 2019 Jan 2;526:32-37
pubmed: 30336336
Front Immunol. 2020 Jan 23;11:8
pubmed: 32038656
Biochem J. 2017 Feb 15;474(4):571-587
pubmed: 27980081
J Gen Virol. 2015 Apr;96(Pt 4):775-781
pubmed: 25537376
J Virol. 2020 Jan 6;94(2):
pubmed: 31619563
Microorganisms. 2021 Jun 03;9(6):
pubmed: 34204859
EMBO J. 2008 Aug 6;27(15):2147-57
pubmed: 18636090
Mol Cell. 2018 Mar 15;69(6):1005-1016.e7
pubmed: 29547715
J Gen Virol. 2010 Aug;91(Pt 8):2080-2090
pubmed: 20375222
Virus Res. 2022 Feb;309:198658
pubmed: 34929216
J Virol. 2010 Jan;84(1):585-98
pubmed: 19846511
J Mol Biol. 2007 Sep 7;372(1):150-9
pubmed: 17631897
Mol Cancer. 2021 Feb 24;20(1):38
pubmed: 33627125
Microb Pathog. 2017 Sep;110:578-585
pubmed: 28782597
Antiviral Res. 2021 Jun;190:105064
pubmed: 33781803
Nucleic Acids Res. 2018 Jan 4;46(D1):D493-D496
pubmed: 29040681
Structure. 2009 Nov 11;17(11):1528-37
pubmed: 19913487
PLoS Pathog. 2018 Jul 12;14(7):e1007125
pubmed: 30001425
Dev Comp Immunol. 2020 May;106:103599
pubmed: 31899305
Rev Med Virol. 2015 Sep;25(5):286-99
pubmed: 26174373
Bioinformatics. 2003 Aug 12;19(12):1585-6
pubmed: 12912844
Fish Shellfish Immunol. 2017 Dec;71:95-104
pubmed: 28964860
J Virol. 2014 Dec;88(23):13689-98
pubmed: 25231298
J Mol Biol. 2009 Jan 23;385(3):843-53
pubmed: 18845156
Proc Natl Acad Sci U S A. 2016 May 10;113(19):5388-93
pubmed: 27118832
Nat Immunol. 2017 Feb;18(2):225-235
pubmed: 28024153
Dev Comp Immunol. 2022 Oct;135:104493
pubmed: 35840014
Virology. 2014 Jan 20;449:70-81
pubmed: 24418539
Front Immunol. 2019 Apr 17;10:822
pubmed: 31057547
Nature. 2019 Sep;573(7775):590-594
pubmed: 31511697
Arch Virol. 2014 Sep;159(9):2469-73
pubmed: 24748006
Cell. 2004 Oct 29;119(3):381-92
pubmed: 15507209
Clin Biochem. 2005 Jun;38(6):499-503
pubmed: 15885226