Onset of human cytomegalovirus replication in fibroblasts requires the presence of an intact vimentin cytoskeleton
- PMID: 19403668
- PMCID: PMC2704777
- DOI: 10.1128/JVI.00398-09
Onset of human cytomegalovirus replication in fibroblasts requires the presence of an intact vimentin cytoskeleton
Abstract
Like all viruses, herpesviruses extensively interact with the host cytoskeleton during entry. While microtubules and microfilaments appear to facilitate viral capsid transport toward the nucleus, evidence for a role of intermediate filaments in herpesvirus entry is lacking. Here, we examined the function of vimentin intermediate filaments in fibroblasts during the initial phase of infection of two genotypically distinct strains of human cytomegalovirus (CMV), one with narrow (AD169) and one with broad (TB40/E) cell tropism. Chemical disruption of the vimentin network with acrylamide, intermediate filament bundling in cells from a patient with giant axonal neuropathy, and absence of vimentin in fibroblasts from vimentin(-/-) mice severely reduced entry of either strain. In vimentin null cells, viral particles remained in the cytoplasm longer than in vimentin(+/+) cells. TB40/E infection was consistently slower than that of AD169 and was more negatively affected by the disruption or absence of vimentin. These findings demonstrate that an intact vimentin network is required for CMV infection onset, that intermediate filaments may function during viral entry to facilitate capsid trafficking and/or docking to the nuclear envelope, and that maintenance of a broader cell tropism is associated with a higher degree of dependence on the vimentin cytoskeleton.
Figures








Similar articles
-
Artemisinins target the intermediate filament protein vimentin for human cytomegalovirus inhibition.J Biol Chem. 2020 Oct 30;295(44):15013-15028. doi: 10.1074/jbc.RA120.014116. Epub 2020 Aug 27. J Biol Chem. 2020. PMID: 32855235 Free PMC article.
-
Impact of sequence variation in the UL128 locus on production of human cytomegalovirus in fibroblast and epithelial cells.J Virol. 2013 Oct;87(19):10489-500. doi: 10.1128/JVI.01546-13. Epub 2013 Jul 24. J Virol. 2013. PMID: 23885075 Free PMC article.
-
Cytoskeleton involvement during human cytomegalovirus replicative cycle in human embryo fibroblasts.New Microbiol. 2000 Jul;23(3):241-56. New Microbiol. 2000. PMID: 10939039
-
The diverse roles and dynamic rearrangement of vimentin during viral infection.J Cell Sci. 2020 Nov 5;134(5):jcs250597. doi: 10.1242/jcs.250597. J Cell Sci. 2020. PMID: 33154171 Review.
-
The Role of Host Cytoskeleton in Flavivirus Infection.Virol Sin. 2019 Feb;34(1):30-41. doi: 10.1007/s12250-019-00086-4. Epub 2019 Feb 6. Virol Sin. 2019. PMID: 30725318 Free PMC article. Review.
Cited by
-
Reversible rearrangement of the cellular cytoskeleton: A key to the broad-spectrum antiviral activity of novel amphiphilic polymers.Mater Today Bio. 2023 Aug 7;22:100763. doi: 10.1016/j.mtbio.2023.100763. eCollection 2023 Oct. Mater Today Bio. 2023. PMID: 37600352 Free PMC article.
-
Characteristics of Immediate-Early 2 (IE2) and UL84 Proteins in UL84-Independent Strains of Human Cytomegalovirus (HCMV).Microbiol Spectr. 2021 Oct 31;9(2):e0053921. doi: 10.1128/Spectrum.00539-21. Epub 2021 Sep 22. Microbiol Spectr. 2021. PMID: 34550009 Free PMC article.
-
Cell susceptibility to baculovirus transduction and echovirus infection is modified by protein kinase C phosphorylation and vimentin organization.J Virol. 2013 Sep;87(17):9822-35. doi: 10.1128/JVI.01004-13. Epub 2013 Jul 3. J Virol. 2013. PMID: 23824807 Free PMC article.
-
Cellular Vimentin Interacts with Foot-and-Mouth Disease Virus Nonstructural Protein 3A and Negatively Modulates Viral Replication.J Virol. 2020 Jul 30;94(16):e00273-20. doi: 10.1128/JVI.00273-20. Print 2020 Jul 30. J Virol. 2020. PMID: 32493819 Free PMC article.
-
Cytoskeletons in the Closet-Subversion in Alphaherpesvirus Infections.Viruses. 2018 Feb 13;10(2):79. doi: 10.3390/v10020079. Viruses. 2018. PMID: 29438303 Free PMC article. Review.
References
-
- Adler, B., L. Scrivano, Z. Ruzcics, B. Rupp, C. Sinzger, and U. Koszinowski. 2006. Role of human cytomegalovirus UL131A in cell type-specific virus entry and release. J. Gen. Virol. 872451-2460. - PubMed
-
- Aggeler, J., and K. Seely. 1990. Cytoskeletal dynamics in rabbit synovial fibroblasts. I. Effects of acrylamide on intermediate filaments and microfilaments. Cell Motil. Cytoskeleton 16110-120. - PubMed
-
- Akter, P., C. Cunningham, B. P. McSharry, A. Dolan, C. Addison, D. J. Dargan, A. F. Hassan-Walker, V. C. Emery, P. D. Griffiths, G. W. Wilkinson, and A. J. Davison. 2003. Two novel spliced genes in human cytomegalovirus. J. Gen. Virol. 841117-1122. - PubMed
-
- Arcangeletti, M. C., F. Pinardi, M. C. Medici, E. Pilotti, F. De Conto, F. Ferraglia, M. P. Landini, C. Chezzi, and G. Dettori. 2000. Cytoskeleton involvement during human cytomegalovirus replicative cycle in human embryo fibroblasts. New Microbiol. 23241-256. - PubMed
-
- Belin, M. T., and P. Boulanger. 1985. Cytoskeletal proteins associated with intracytoplasmic human adenovirus at an early stage of infection. Exp. Cell Res. 160356-370. - PubMed
Publication types
MeSH terms
Substances
LinkOut - more resources
Full Text Sources
Medical