Abstract
Free full text
Maintenance of pluripotency in mouse embryonic stem cells persistently infected with murine coronavirus.
A persistently coronavirus-infected embryonic stem (ES) cell line A3/MHV was established by infecting an ES cell line, A3-1, with mouse hepatitis virus type-2. Although almost all A3/MHV cells were found infected, both A3/MHV and A3-1 cells expressed comparable levels of cell surface differentiation markers. In addition, A3/MHV cells retained the ability to form embryoid bodies. These results suggest that persistent coronavirus infection does not affect the differentiation of ES cells.
These references are in PubMed. This may not be the complete list of references from this article.
- Aoyama H, Delouvée A, Thiery JP. Cell adhesion mechanisms in gangliogenesis studied in avian embryo and in a model system. Cell Differ. 1985 Nov;17(4):247–260. [Abstract] [Google Scholar]
- Asanaka M, Lai MM. Cell fusion studies identified multiple cellular factors involved in mouse hepatitis virus entry. Virology. 1993 Dec;197(2):732–741. [Abstract] [Google Scholar]
- Baybutt HN, Wege H, Carter MJ, ter Meulen V. Adaptation of coronavirus JHM to persistent infection of murine sac(-) cells. J Gen Virol. 1984 May;65(Pt 5):915–924. [Abstract] [Google Scholar]
- Bradley A, Evans M, Kaufman MH, Robertson E. Formation of germ-line chimaeras from embryo-derived teratocarcinoma cell lines. Nature. 1984 May 17;309(5965):255–256. [Abstract] [Google Scholar]
- Castro RF, Perlman S. CD8+ T-cell epitopes within the surface glycoprotein of a neurotropic coronavirus and correlation with pathogenicity. J Virol. 1995 Dec;69(12):8127–8131. [Europe PMC free article] [Abstract] [Google Scholar]
- Doetschman T, Williams P, Maeda N. Establishment of hamster blastocyst-derived embryonic stem (ES) cells. Dev Biol. 1988 May;127(1):224–227. [Abstract] [Google Scholar]
- Dveksler GS, Basile AA, Cardellichio CB, Holmes KV. Mouse hepatitis virus receptor activities of an MHVR/mph chimera and MHVR mutants lacking N-linked glycosylation of the N-terminal domain. J Virol. 1995 Jan;69(1):543–546. [Europe PMC free article] [Abstract] [Google Scholar]
- Evans MJ, Kaufman MH. Establishment in culture of pluripotential cells from mouse embryos. Nature. 1981 Jul 9;292(5819):154–156. [Abstract] [Google Scholar]
- Fleming JO, Stohlman SA, Harmon RC, Lai MM, Frelinger JA, Weiner LP. Antigenic relationships of murine coronaviruses: analysis using monoclonal antibodies to JHM (MHV-4) virus. Virology. 1983 Dec;131(2):296–307. [Europe PMC free article] [Abstract] [Google Scholar]
- Flintoff WF, Van Dinter S. Several rat cell lines share a common defect in their inability to internalize murine coronaviruses efficiently. J Gen Virol. 1989 Jul;70(Pt 7):1713–1724. [Abstract] [Google Scholar]
- Grover A, Andrews G, Adamson ED. Role of laminin in epithelium formation by F9 aggregates. J Cell Biol. 1983 Jul;97(1):137–144. [Europe PMC free article] [Abstract] [Google Scholar]
- Grover A, Oshima RG, Adamson ED. Epithelial layer formation in differentiating aggregates of F9 embryonal carcinoma cells. J Cell Biol. 1983 Jun;96(6):1690–1696. [Europe PMC free article] [Abstract] [Google Scholar]
- Hilton A, Mizzen L, MacIntyre G, Cheley S, Anderson R. Translational control in murine hepatitis virus infection. J Gen Virol. 1986 May;67(Pt 5):923–932. [Abstract] [Google Scholar]
- Kooi C, Mizzen L, Alderson C, Daya M, Anderson R. Early events of importance in determining host cell permissiveness to mouse hepatitis virus infection. J Gen Virol. 1988 Jun;69(Pt 6):1125–1135. [Abstract] [Google Scholar]
- Kubo H, Takase-Yoden S, Taguchi F. Neutralization and fusion inhibition activities of monoclonal antibodies specific for the S1 subunit of the spike protein of neurovirulent murine coronavirus JHMV c1-2 variant. J Gen Virol. 1993 Jul;74(Pt 7):1421–1425. [Abstract] [Google Scholar]
- Kurihara Y, Kurihara H, Suzuki H, Kodama T, Maemura K, Nagai R, Oda H, Kuwaki T, Cao WH, Kamada N, et al. Elevated blood pressure and craniofacial abnormalities in mice deficient in endothelin-1. Nature. 1994 Apr 21;368(6473):703–710. [Abstract] [Google Scholar]
- Kyuwa S, Cohen M, Nelson G, Tahara SM, Stohlman SA. Modulation of cellular macromolecular synthesis by coronavirus: implication for pathogenesis. J Virol. 1994 Oct;68(10):6815–6819. [Europe PMC free article] [Abstract] [Google Scholar]
- Lai MM. Coronavirus: organization, replication and expression of genome. Annu Rev Microbiol. 1990;44:303–333. [Abstract] [Google Scholar]
- Lamontagne LM, Dupuy JM. Persistent infection with mouse hepatitis virus 3 in mouse lymphoid cell lines. Infect Immun. 1984 Jun;44(3):716–723. [Europe PMC free article] [Abstract] [Google Scholar]
- Leibowitz JL, Bond CW, Anderson K, Goss S. Biological and macromolecular properties of murine cells persistently infected with MHV-JHM. Arch Virol. 1984;80(4):315–332. [Europe PMC free article] [Abstract] [Google Scholar]
- Macintyre G, Wong F, Anderson R. A model for persistent murine coronavirus infection involving maintenance via cytopathically infected cell centres. J Gen Virol. 1989 Mar;70(Pt 3):763–768. [Abstract] [Google Scholar]
- Martin GR. Isolation of a pluripotent cell line from early mouse embryos cultured in medium conditioned by teratocarcinoma stem cells. Proc Natl Acad Sci U S A. 1981 Dec;78(12):7634–7638. [Europe PMC free article] [Abstract] [Google Scholar]
- Mizzen L, Cheley S, Rao M, Wolf R, Anderson R. Fusion resistance and decreased infectability as major host cell determinants of coronavirus persistence. Virology. 1983 Jul 30;128(2):407–417. [Europe PMC free article] [Abstract] [Google Scholar]
- Muramatsu H, Hamada H, Noguchi S, Kamada Y, Muramatsu T. Cell-surface changes during in vitro differentiation of pluripotent embryonal carcinoma cells. Dev Biol. 1985 Aug;110(2):284–296. [Abstract] [Google Scholar]
- Muramatsu T. Cell surface glycoproteins as markers in monitoring in vitro differentiation of embryonal carcinoma cells. Cell Differ. 1984 Dec;15(2-4):101–108. [Abstract] [Google Scholar]
- Nédellec P, Dveksler GS, Daniels E, Turbide C, Chow B, Basile AA, Holmes KV, Beauchemin N. Bgp2, a new member of the carcinoembryonic antigen-related gene family, encodes an alternative receptor for mouse hepatitis viruses. J Virol. 1994 Jul;68(7):4525–4537. [Europe PMC free article] [Abstract] [Google Scholar]
- Nomoto S, Muramatsu H, Ozawa M, Suganuma T, Tashiro M, Muramatsu T. An anti-carbohydrate monoclonal antibody inhibits cell-substratum adhesion of F9 embryonal carcinoma cells. Exp Cell Res. 1986 May;164(1):49–62. [Abstract] [Google Scholar]
- Pease S, Williams RL. Formation of germ-line chimeras from embryonic stem cells maintained with recombinant leukemia inhibitory factor. Exp Cell Res. 1990 Oct;190(2):209–211. [Abstract] [Google Scholar]
- Reisner Y, Gachelin G, Dubois P, Nicolas JF, Sharon N, Jacob F. Interaction of peanut agglutinin, a lectin specific for nonreducing terminal D-galactosyl residues, with embryonal carcinoma cells. Dev Biol. 1977 Nov;61(1):20–27. [Abstract] [Google Scholar]
- Sato M, Ozawa M, Hamada H, Kasai M, Tokunaga T, Muramatsu T. Cell surface markers to monitor the process of visceral endoderm differentiation from embryonal carcinoma cells: identification of the stage sensitive to high concentration of retinoic acid. J Embryol Exp Morphol. 1985 Aug;88:165–182. [Abstract] [Google Scholar]
- Sawicki SG, Lu JH, Holmes KV. Persistent infection of cultured cells with mouse hepatitis virus (MHV) results from the epigenetic expression of the MHV receptor. J Virol. 1995 Sep;69(9):5535–5543. [Europe PMC free article] [Abstract] [Google Scholar]
- Shames RB, Jennings AG, Sawyer RH. Expression of the cell adhesion molecules, L-CAM and N-CAM during avian scale development. J Exp Zool. 1991 Feb;257(2):195–207. [Abstract] [Google Scholar]
- Shen MM, Leder P. Leukemia inhibitory factor is expressed by the preimplantation uterus and selectively blocks primitive ectoderm formation in vitro. Proc Natl Acad Sci U S A. 1992 Sep 1;89(17):8240–8244. [Europe PMC free article] [Abstract] [Google Scholar]
- Spaan W, Cavanagh D, Horzinek MC. Coronaviruses: structure and genome expression. J Gen Virol. 1988 Dec;69(Pt 12):2939–2952. [Abstract] [Google Scholar]
- Taguchi F, Yamada A, Fujiwara K. Resistance to highly virulent mouse hepatitis virus acquired by mice after low-virulence infection: enhanced antiviral activity of macrophages. Infect Immun. 1980 Jul;29(1):42–49. [Europe PMC free article] [Abstract] [Google Scholar]
- Tahara SM, Dietlin TA, Bergmann CC, Nelson GW, Kyuwa S, Anthony RP, Stohlman SA. Coronavirus translational regulation: leader affects mRNA efficiency. Virology. 1994 Aug 1;202(2):621–630. [Europe PMC free article] [Abstract] [Google Scholar]
- Vestweber D, Kemler R. Identification of a putative cell adhesion domain of uvomorulin. EMBO J. 1985 Dec 16;4(13A):3393–3398. [Europe PMC free article] [Abstract] [Google Scholar]
- Wege H, Siddell S, ter Meulen V. The biology and pathogenesis of coronaviruses. Curr Top Microbiol Immunol. 1982;99:165–200. [Abstract] [Google Scholar]
- Williams RK, Jiang GS, Holmes KV. Receptor for mouse hepatitis virus is a member of the carcinoembryonic antigen family of glycoproteins. Proc Natl Acad Sci U S A. 1991 Jul 1;88(13):5533–5536. [Europe PMC free article] [Abstract] [Google Scholar]
- Yokomori K, Asanaka M, Stohlman SA, Lai MM. A spike protein-dependent cellular factor other than the viral receptor is required for mouse hepatitis virus entry. Virology. 1993 Sep;196(1):45–56. [Abstract] [Google Scholar]
Articles from Journal of Virology are provided here courtesy of American Society for Microbiology (ASM)
Full text links
Read article at publisher's site: https://doi.org/10.1128/jvi.70.6.4146-4149.1996
Read article for free, from open access legal sources, via Unpaywall: https://europepmc.org/articles/pmc190306?pdf=render
Free after 4 months at jvi.asm.org
http://jvi.asm.org/cgi/reprint/70/6/4146
Free to read at jvi.asm.org
http://jvi.asm.org/cgi/content/abstract/70/6/4146
Citations & impact
Impact metrics
Citations of article over time
Alternative metrics
Discover the attention surrounding your research
https://www.altmetric.com/details/168033973
Smart citations by scite.ai
Explore citation contexts and check if this article has been
supported or disputed.
https://scite.ai/reports/10.1128/jvi.70.6.4146-4149.1996
Article citations
FELASA recommendations for the health monitoring of mouse, rat, hamster, guinea pig and rabbit colonies in breeding and experimental units.
Lab Anim, 48(3):178-192, 04 Feb 2014
Cited by: 314 articles | PMID: 24496575
Intracellular restriction of a productive noncytopathic coronavirus infection.
J Virol, 82(1):451-460, 24 Oct 2007
Cited by: 1 article | PMID: 17959675 | PMCID: PMC2224397
Impairment of germline transmission after blastocyst injection with murine embryonic stem cells cultured with mouse hepatitis virus and mouse minute virus.
Transgenic Res, 18(1):45-57, 18 Sep 2008
Cited by: 1 article | PMID: 18800235 | PMCID: PMC2758372
From bench to cageside: Risk assessment for rodent pathogen contamination of cells and biologics.
ILAR J, 49(3):310-315, 01 Jan 2008
Cited by: 20 articles | PMID: 18506064 | PMCID: PMC7108569
Review Free full text in Europe PMC
Rodent and germplasm trafficking: risks of microbial contamination in a high-tech biomedical world.
ILAR J, 49(3):347-355, 01 Jan 2008
Cited by: 11 articles | PMID: 18506068 | PMCID: PMC7108542
Go to all (12) article citations
Data
Protocols & materials
Similar Articles
To arrive at the top five similar articles we use a word-weighted algorithm to compare words from the Title and Abstract of each citation.
Replication of murine coronaviruses in mouse embryonic stem cell lines in vitro.
Exp Anim, 46(4):311-313, 01 Oct 1997
Cited by: 9 articles | PMID: 9353641
The murine coronavirus mouse hepatitis virus strain A59 from persistently infected murine cells exhibits an extended host range.
J Virol, 71(12):9499-9507, 01 Dec 1997
Cited by: 46 articles | PMID: 9371612 | PMCID: PMC230256
Selection in persistently infected murine cells of an MHV-A59 variant with extended host range.
Adv Exp Med Biol, 440:735-741, 01 Jan 1998
Cited by: 2 articles | PMID: 9782352
Pluripotent stem cells--model of embryonic development, tool for gene targeting, and basis of cell therapy.
Anat Histol Embryol, 31(3):169-186, 01 Jun 2002
Cited by: 60 articles | PMID: 12479360
Review