» Articles » PMID: 19828764

Vps4 and the ESCRT-III Complex Are Required for the Release of Infectious Hepatitis C Virus Particles

Overview
Journal J Gen Virol
Specialty Microbiology
Date 2009 Oct 16
PMID 19828764
Citations 60
Authors
Affiliations
Soon will be listed here.
Abstract

The mechanisms by which infectious hepatitis C virus (HCV) particles are assembled and released from infected cells remain poorly characterized. In this regard, many other enveloped viruses, notably human immunodeficiency virus type 1, have been shown to utilize the host vacuolar protein sorting machinery (also known as the endosomal sorting complex required for transport; ESCRT) to traffic through the cell and effect the membrane rearrangements required for the formation of enveloped particles. We postulated that this might also apply to HCV. To test this hypothesis, we established a method of conditional virus-like particle assembly involving trans-complementation of an envelope-deleted JFH-1 genome using plasmid transfection. This system reliably produced virus particles that were infectious and could be enumerated easily by focus-forming assay in Huh7 cells. Following co-transfection with plasmids expressing various dominant-negative forms of either components of the ESCRT-III complex or Vps4 (the AAA ATPase that recycles the ESCRT complexes), a reduction in particle production was seen. No significant effect was observed after co-transfection of dominant-negative ESCRT-I or Alix, an ESCRT associated protein. Dominant-negative Vps4 or ESCRT-III components had no effect on either virus genome replication or the accumulation of intracellular infectious particles. These data were confirmed using cell culture infectious HCV and we conclude that HCV requires late components of the ESCRT pathway for release of infectious virus particles.

Citing Articles

Hepatitis B virus entry, assembly, and egress.

Chuang Y, Ou J Microbiol Mol Biol Rev. 2024; 88(4):e0001424.

PMID: 39440957 PMC: 11653734. DOI: 10.1128/mmbr.00014-24.


Temporal insights into molecular and cellular responses during rAAV production in HEK293T cells.

Patra A, Tan E, Kok Y, Ng S, Bi X Mol Ther Methods Clin Dev. 2024; 32(3):101278.

PMID: 39022743 PMC: 11253160. DOI: 10.1016/j.omtm.2024.101278.


Human cytomegalovirus deploys molecular mimicry to recruit VPS4A to sites of virus assembly.

Butt B, Fischer D, Rep A, Schauflinger M, Read C, Bock T PLoS Pathog. 2024; 20(6):e1012300.

PMID: 38900818 PMC: 11218997. DOI: 10.1371/journal.ppat.1012300.


ALIX and TSG101 are essential for cellular entry and replication of two porcine alphacoronaviruses.

Chen X, Liang Y, Weng Z, Hu C, Peng Y, Sun Y PLoS Pathog. 2024; 20(3):e1012103.

PMID: 38489378 PMC: 10971774. DOI: 10.1371/journal.ppat.1012103.


Cellular Release of Infectious Hepatitis C Virus Particles via Endosomal Pathways.

Deng L, Solichin M, Adyaksa D, Septianastiti M, Fitri R, Suwardan G Viruses. 2023; 15(12).

PMID: 38140670 PMC: 10747773. DOI: 10.3390/v15122430.


References
1.
Bredenbeek P, Frolov I, Rice C, Schlesinger S . Sindbis virus expression vectors: packaging of RNA replicons by using defective helper RNAs. J Virol. 1993; 67(11):6439-46. PMC: 238079. DOI: 10.1128/JVI.67.11.6439-6446.1993. View

2.
Adair R, Patel A, Corless L, Griffin S, Rowlands D, McCormick C . Expression of hepatitis C virus (HCV) structural proteins in trans facilitates encapsidation and transmission of HCV subgenomic RNA. J Gen Virol. 2009; 90(Pt 4):833-842. DOI: 10.1099/vir.2008.006049-0. View

3.
Teis D, Saksena S, Emr S . SnapShot: the ESCRT machinery. Cell. 2009; 137(1):182-182.e1. DOI: 10.1016/j.cell.2009.03.027. View

4.
Khromykh A, Varnavski A, WESTAWAY E . Encapsidation of the flavivirus kunjin replicon RNA by using a complementation system providing Kunjin virus structural proteins in trans. J Virol. 1998; 72(7):5967-77. PMC: 110401. DOI: 10.1128/JVI.72.7.5967-5977.1998. View

5.
McDonald B, Martin-Serrano J . No strings attached: the ESCRT machinery in viral budding and cytokinesis. J Cell Sci. 2009; 122(Pt 13):2167-77. PMC: 2723143. DOI: 10.1242/jcs.028308. View