Skip to main content
Erschienen in: Archives of Virology 4/2010

01.04.2010 | Original Article

Regulation of pseudorabies virus gG glycoprotein gene promoter independently of pseudorabies immediate early IE180 protein

verfasst von: A. L. Muñoz, M. Torres, B. Martín, L. Lerma, E. Tabarés

Erschienen in: Archives of Virology | Ausgabe 4/2010

Einloggen, um Zugang zu erhalten

Abstract

The pseudorabies virus (PRV) glycoprotein known as gG is generally regarded as an early protein, and the immediate early IE180 protein regulates its expression during infection. This study, however, provides evidence that although induction by IE180 is observed, the expression of a marker protein (EGFP), or gG itself, under the control of the gG promoter, can also occur independently of the expression of IE180. This result was demonstrated both with transient transfection assays using plasmids and with viral infections. In transient transfections, the expression under control of the gG promoter depends on the cell type and surprisingly, can be 1.3-fold higher than the expression under the control of the IE180 promoter in Hela Tet-Off cells. Recombinant PRV S3 was constructed by replacing gE in the PRV genome with a chimeric transgene, expressing EGFP under the control of the gG promoter. In PK15 cells infected with NIA-3 wild-type virus or with S3 recombinant virus, expression of gG PRV mRNA (or EGFP mRNA) under the control of the gG promoter in the presence of cycloheximide was detected by RT-PCR. This again indicates that some basal expression was produced in infected cells independently of IE180. This expression was augmented by IE180 protein in both plasmid transfections and viral infections.
Literatur
1.
Zurück zum Zitat Bzik DJ, Preston CM (1986) Analysis of DNA sequences which regulate the transcription of herpes simplex virus immediate early gene 3: DNA sequences required for enhancer-like activity and response to trans-activation by a virion polypeptide. Nucleic Acids Res 14:929–943CrossRefPubMed Bzik DJ, Preston CM (1986) Analysis of DNA sequences which regulate the transcription of herpes simplex virus immediate early gene 3: DNA sequences required for enhancer-like activity and response to trans-activation by a virion polypeptide. Nucleic Acids Res 14:929–943CrossRefPubMed
2.
Zurück zum Zitat Campbell ME, Preston CM (1987) DNA sequences which regulate the expression of the pseudorabies virus major immediate early gene. Virology 157:307–316CrossRefPubMed Campbell ME, Preston CM (1987) DNA sequences which regulate the expression of the pseudorabies virus major immediate early gene. Virology 157:307–316CrossRefPubMed
3.
Zurück zum Zitat Deatly AJM, Ben Porat T (1985) Relation between the levels of mRNA abundance and kinetics of protein synthesis in pseudorabies virus-infected cells. Virology 143:558–568CrossRefPubMed Deatly AJM, Ben Porat T (1985) Relation between the levels of mRNA abundance and kinetics of protein synthesis in pseudorabies virus-infected cells. Virology 143:558–568CrossRefPubMed
4.
Zurück zum Zitat Fernández A, Menéndez del Campo AM, Fernández S, Camacho A, Castro JM, Tabarés E (1999) Conversion of US3-encoded protein kinase gene from pseudorabies virus in a diploid gene located within inverted repeats by genetic recombination between the viral genome isomers. Virus Res 61:125–135CrossRefPubMed Fernández A, Menéndez del Campo AM, Fernández S, Camacho A, Castro JM, Tabarés E (1999) Conversion of US3-encoded protein kinase gene from pseudorabies virus in a diploid gene located within inverted repeats by genetic recombination between the viral genome isomers. Virus Res 61:125–135CrossRefPubMed
5.
Zurück zum Zitat Gómez-Sebastián S, Tabarés E (2004) Negative regulation of herpes simplex virus type 1 ICP4 promoter by IE 180 protein of pseudorabies virus. J Gen Virol 85:2125–2130CrossRefPubMed Gómez-Sebastián S, Tabarés E (2004) Negative regulation of herpes simplex virus type 1 ICP4 promoter by IE 180 protein of pseudorabies virus. J Gen Virol 85:2125–2130CrossRefPubMed
6.
Zurück zum Zitat Gould DJ, Chernajovsky Y (2004) Endogenous GATA factors bind the core sequence of the tetO and influence gene regulation with tetracycline system. Mol Ther 10:127–138CrossRefPubMed Gould DJ, Chernajovsky Y (2004) Endogenous GATA factors bind the core sequence of the tetO and influence gene regulation with tetracycline system. Mol Ther 10:127–138CrossRefPubMed
7.
Zurück zum Zitat Ihara S, Feldman L, Watanabe S, Ben-Porat T (1983) Characterization of the immediate-early functions of pseudorabies virus. Virology 131:437–454CrossRefPubMed Ihara S, Feldman L, Watanabe S, Ben-Porat T (1983) Characterization of the immediate-early functions of pseudorabies virus. Virology 131:437–454CrossRefPubMed
8.
Zurück zum Zitat Jöns A, Mettenleiter TC (1997) Green fluorescent protein expressed by recombinant pseudorabies virus as an in vivo marker for viral replication. J Virol Methods 66:283–292CrossRefPubMed Jöns A, Mettenleiter TC (1997) Green fluorescent protein expressed by recombinant pseudorabies virus as an in vivo marker for viral replication. J Virol Methods 66:283–292CrossRefPubMed
9.
Zurück zum Zitat Jones C, Zhu F, Dhanwada KR (1993) Analysis of a herpes simplex virus 2 fragment from the open reading frame of the large subunit of ribonucleotide reductase with transcriptional regulatory activity. DNA Cell Biol 12:127–137CrossRefPubMed Jones C, Zhu F, Dhanwada KR (1993) Analysis of a herpes simplex virus 2 fragment from the open reading frame of the large subunit of ribonucleotide reductase with transcriptional regulatory activity. DNA Cell Biol 12:127–137CrossRefPubMed
10.
Zurück zum Zitat Klupp GB, Hengartner CJ, Mettenleiter TC, Enquist LW (2004) Complete, annotated sequence of the pseudorabies virus genome. J Virol 78:424–440CrossRefPubMed Klupp GB, Hengartner CJ, Mettenleiter TC, Enquist LW (2004) Complete, annotated sequence of the pseudorabies virus genome. J Virol 78:424–440CrossRefPubMed
11.
Zurück zum Zitat Kovacs F, Mettenleiter TC (1991) Firefly luciferase as a marker for herpesvirus (pseudorabies virus) replication in vitro and in vivo. J Gen Virol 72:2999–3008CrossRefPubMed Kovacs F, Mettenleiter TC (1991) Firefly luciferase as a marker for herpesvirus (pseudorabies virus) replication in vitro and in vivo. J Gen Virol 72:2999–3008CrossRefPubMed
12.
Zurück zum Zitat Mackem S, Roizman B (1982) Structural features of the a gene 4, 0, and 27 promoter-regulatory sequences which confer a regulation on chimeric thymidine kinase genes. J Virol 68:4898–4909 Mackem S, Roizman B (1982) Structural features of the a gene 4, 0, and 27 promoter-regulatory sequences which confer a regulation on chimeric thymidine kinase genes. J Virol 68:4898–4909
13.
Zurück zum Zitat McFerran JB, Dow C (1975) Studies on immunisation of pigs with the Bartha strain of Aujeszky’s disease virus. Res Vet Sci 19:17–22PubMed McFerran JB, Dow C (1975) Studies on immunisation of pigs with the Bartha strain of Aujeszky’s disease virus. Res Vet Sci 19:17–22PubMed
14.
Zurück zum Zitat Mettenleiter TC (2000) Aujeszky’s disease (pseudorabies) virus: the virus and molecular pathogenesis—state of the art, June 1999. Vet Res 31:99–115PubMed Mettenleiter TC (2000) Aujeszky’s disease (pseudorabies) virus: the virus and molecular pathogenesis—state of the art, June 1999. Vet Res 31:99–115PubMed
15.
Zurück zum Zitat Mettenleiter TC, Rauh I (1990) A glycoprotein gX-β-galactosidase fusion gene as a insertional marker for rapid identification of pseudorabies virus mutants. J Virol Methods 30:55–66CrossRefPubMed Mettenleiter TC, Rauh I (1990) A glycoprotein gX-β-galactosidase fusion gene as a insertional marker for rapid identification of pseudorabies virus mutants. J Virol Methods 30:55–66CrossRefPubMed
16.
Zurück zum Zitat Muñoz AL, Prieto C, Tabarés E (2006) A comparison of enhanced green fluorescent protein expression induced by immediate-early cytomegalovirus (IE-CMV) and gG pseudorabies virus (gG-PRV) promoters, using pseudorabies virus amplicons as vectors. J Virol Methods 136:257–260CrossRefPubMed Muñoz AL, Prieto C, Tabarés E (2006) A comparison of enhanced green fluorescent protein expression induced by immediate-early cytomegalovirus (IE-CMV) and gG pseudorabies virus (gG-PRV) promoters, using pseudorabies virus amplicons as vectors. J Virol Methods 136:257–260CrossRefPubMed
17.
Zurück zum Zitat Nauwynck H, Glorieux S, Favoreel H, Pensaert M (2007) Cell biological and molecular characteristics of pseudorabies virus infections in cell cultures and in pigs with emphasis on the respiratory tract. Vet Res 38:229–241CrossRefPubMed Nauwynck H, Glorieux S, Favoreel H, Pensaert M (2007) Cell biological and molecular characteristics of pseudorabies virus infections in cell cultures and in pigs with emphasis on the respiratory tract. Vet Res 38:229–241CrossRefPubMed
18.
Zurück zum Zitat O’Hare P, Goding CR (1988) Herpes simplex virus regulatory elements and the immunoglobulin octamer domain bind a common factor and are both targets for virion transactivation. Cell 52:435–445CrossRefPubMed O’Hare P, Goding CR (1988) Herpes simplex virus regulatory elements and the immunoglobulin octamer domain bind a common factor and are both targets for virion transactivation. Cell 52:435–445CrossRefPubMed
19.
Zurück zum Zitat Paul PS, Halbur P, Janke B, Joo H, Nawagitgul P, Singh J, Sorden S (2003) Exogenous porcine viruses. Curr Top Microbiol Immunol 278:125–183PubMed Paul PS, Halbur P, Janke B, Joo H, Nawagitgul P, Singh J, Sorden S (2003) Exogenous porcine viruses. Curr Top Microbiol Immunol 278:125–183PubMed
20.
Zurück zum Zitat Pellet PE, Roizman B (2007) The family of Herpesviridae: a brief introduction. In: Knipe DN, Howley PM, Griffin DE, Lamb RA, Martin MA, Roizman B, Straus SE (eds) Fields virology, 5th edn. Lippincott-Williams-Wilkins, Philadelphia, pp 2479–2499 Pellet PE, Roizman B (2007) The family of Herpesviridae: a brief introduction. In: Knipe DN, Howley PM, Griffin DE, Lamb RA, Martin MA, Roizman B, Straus SE (eds) Fields virology, 5th edn. Lippincott-Williams-Wilkins, Philadelphia, pp 2479–2499
21.
Zurück zum Zitat Poffenberger KL, Tabarés E, Roizman B (1983) Characterization of a viable, noninverting herpes simplex virus 1 genome derived by insertion and deletion of sequences at the junction of components L and S. Proc Natl Acad Sci USA 80:2690–2694CrossRefPubMed Poffenberger KL, Tabarés E, Roizman B (1983) Characterization of a viable, noninverting herpes simplex virus 1 genome derived by insertion and deletion of sequences at the junction of components L and S. Proc Natl Acad Sci USA 80:2690–2694CrossRefPubMed
22.
Zurück zum Zitat Post LE, Mackem S, Roizman B (1981) Regulation of α genes of herpes simplex virus: expression of chimeric genes produced by fusion of thymidine kinase with α gene promoters. Cell 24:555–565CrossRefPubMed Post LE, Mackem S, Roizman B (1981) Regulation of α genes of herpes simplex virus: expression of chimeric genes produced by fusion of thymidine kinase with α gene promoters. Cell 24:555–565CrossRefPubMed
23.
Zurück zum Zitat Preston CM, Cordingley MG, Stow ND (1984) Analysis of DNA sequences which regulated the transcription of a herpes simplex virus immediate early gene. J Virol 50:708–716PubMed Preston CM, Cordingley MG, Stow ND (1984) Analysis of DNA sequences which regulated the transcription of a herpes simplex virus immediate early gene. J Virol 50:708–716PubMed
24.
Zurück zum Zitat Prieto J, Martin Hernández AM, Tabarés E (1991) Loss of pseudorabies virus thymidine kinase activity due a to single base mutation and amino acid substitution. J Gen Virol 72:1435–1439CrossRefPubMed Prieto J, Martin Hernández AM, Tabarés E (1991) Loss of pseudorabies virus thymidine kinase activity due a to single base mutation and amino acid substitution. J Gen Virol 72:1435–1439CrossRefPubMed
25.
Zurück zum Zitat Qiang P, Li XM, Jin ML, Peng CQ, Chen HC (2004) An approach to a FMD vaccine based on genetic engineered attenuated pseudorabies virus: one experiment using VP1 gene alone generates an antibody responds on FMD and pseudorabies in swine. Vaccine 22:2129–2136CrossRef Qiang P, Li XM, Jin ML, Peng CQ, Chen HC (2004) An approach to a FMD vaccine based on genetic engineered attenuated pseudorabies virus: one experiment using VP1 gene alone generates an antibody responds on FMD and pseudorabies in swine. Vaccine 22:2129–2136CrossRef
26.
Zurück zum Zitat Quinlan MP, Knipe DM (1985) Stimulation of expression of a herpes simplex virus DNA-binding protein by two functions. Mol Cell Biol 5:957–963PubMed Quinlan MP, Knipe DM (1985) Stimulation of expression of a herpes simplex virus DNA-binding protein by two functions. Mol Cell Biol 5:957–963PubMed
27.
Zurück zum Zitat Rea TJ, Timmins JG, Long GW, Post LE (1985) Mapping and sequence of the gene for the pseudorabies virus glycoprotein which accumulates in the medium of infected cells. J Virol 54:21–29PubMed Rea TJ, Timmins JG, Long GW, Post LE (1985) Mapping and sequence of the gene for the pseudorabies virus glycoprotein which accumulates in the medium of infected cells. J Virol 54:21–29PubMed
28.
Zurück zum Zitat Robbins AK, Watson RJ, Whealy ME, Hays WW, Enquist LW (1986) Characterization of a pseudorabies virus glycoprotein gene with homology to herpes simplex virus type 1 and type 2 glycoprotein C. J Virol 58:339–347PubMed Robbins AK, Watson RJ, Whealy ME, Hays WW, Enquist LW (1986) Characterization of a pseudorabies virus glycoprotein gene with homology to herpes simplex virus type 1 and type 2 glycoprotein C. J Virol 58:339–347PubMed
29.
Zurück zum Zitat Roizman B, Knipe DM, Whitley RJ (2007) Herpes Simplex viruses. In: Knipe DN, Howley PM, Griffin DE, Lamb RA, Martin MA, Roizman B, Straus SE (eds) Fields virology, 5th edn. Lippincott-Williams-Wilkins, Philadelphia, pp 2501–2601 Roizman B, Knipe DM, Whitley RJ (2007) Herpes Simplex viruses. In: Knipe DN, Howley PM, Griffin DE, Lamb RA, Martin MA, Roizman B, Straus SE (eds) Fields virology, 5th edn. Lippincott-Williams-Wilkins, Philadelphia, pp 2501–2601
30.
Zurück zum Zitat Shapira M, Homa FL, Glorioso JC, Levine M (1987) Regulation of the herpes simplex virus type 1 late (gamma 2) glycoprotein C gene: sequences between base pairs −34 to +29 control transient expression and responsiveness to transactivation by the products of the immediate early (alpha) 4 and 0 genes. Nucleic Acids Res 15:3097–3111CrossRefPubMed Shapira M, Homa FL, Glorioso JC, Levine M (1987) Regulation of the herpes simplex virus type 1 late (gamma 2) glycoprotein C gene: sequences between base pairs −34 to +29 control transient expression and responsiveness to transactivation by the products of the immediate early (alpha) 4 and 0 genes. Nucleic Acids Res 15:3097–3111CrossRefPubMed
31.
Zurück zum Zitat Silver S, Roizman B (1985) gamma 2-Thymidine kinase chimeras are identically transcribed but regulated a gamma 2 genes in herpes simplex virus genomes and as beta genes in cell genomes. Mol Cell Biol 5:518–528PubMed Silver S, Roizman B (1985) gamma 2-Thymidine kinase chimeras are identically transcribed but regulated a gamma 2 genes in herpes simplex virus genomes and as beta genes in cell genomes. Mol Cell Biol 5:518–528PubMed
32.
Zurück zum Zitat Song CK, Enquist LW, Bartness TJ (2005) New developments in tracing neuronal circuits with herpesviruses. Virus Res 111:235–249CrossRefPubMed Song CK, Enquist LW, Bartness TJ (2005) New developments in tracing neuronal circuits with herpesviruses. Virus Res 111:235–249CrossRefPubMed
33.
Zurück zum Zitat Tabarés E, Olivares I, Santurde G, García MJ, Martin E, Carnero ME (1987) African swine fever virus DNA: deletions and additions during adaptation to growth in monkey kidney cells. Arch Virol 97:333–346CrossRefPubMed Tabarés E, Olivares I, Santurde G, García MJ, Martin E, Carnero ME (1987) African swine fever virus DNA: deletions and additions during adaptation to growth in monkey kidney cells. Arch Virol 97:333–346CrossRefPubMed
34.
Zurück zum Zitat Thomsen DR, Marotti KR, Palermo DP, Post LE (1987) Pseudorabies virus as a live virus vector for expression of foreign genes. Gene 57:261–265CrossRefPubMed Thomsen DR, Marotti KR, Palermo DP, Post LE (1987) Pseudorabies virus as a live virus vector for expression of foreign genes. Gene 57:261–265CrossRefPubMed
35.
Zurück zum Zitat Van Zijl M, Wensvoort G, Kluyver E, Hulst M, Gulden H, Gielkens A, Berns A, Moormann R (1991) Live attenuated pseudorabies virus expressing envelope glycoprotein E1 of hog cholera virus protects swine against both pseudorabies and hog cholera. J Virol 65:2761–2765PubMed Van Zijl M, Wensvoort G, Kluyver E, Hulst M, Gulden H, Gielkens A, Berns A, Moormann R (1991) Live attenuated pseudorabies virus expressing envelope glycoprotein E1 of hog cholera virus protects swine against both pseudorabies and hog cholera. J Virol 65:2761–2765PubMed
36.
Zurück zum Zitat Van Oirschot GD, Gielskens ALJ, Moormann R, Berns A (1990) Marker vaccines, virus protein-specific antibody assay and the control of Aujeszky disease. Vet Microbiol 23:85–101CrossRefPubMed Van Oirschot GD, Gielskens ALJ, Moormann R, Berns A (1990) Marker vaccines, virus protein-specific antibody assay and the control of Aujeszky disease. Vet Microbiol 23:85–101CrossRefPubMed
37.
Zurück zum Zitat Viejo-Borbolla A, Muñoz AL, Tabarés E, Alcamí A (2010) Glycoprotein G from pseudorabies virus binds to chemokines with high affinity and inhibits their function. J Gen Virol 91:23–31 Viejo-Borbolla A, Muñoz AL, Tabarés E, Alcamí A (2010) Glycoprotein G from pseudorabies virus binds to chemokines with high affinity and inhibits their function. J Gen Virol 91:23–31
38.
Zurück zum Zitat Vlcek C, Paces V, Schwyzer M (1989) Nucleotide sequence of the pseudorabies virus immediate early gene, encoding a strong transactivator protein. Virus Genes 2:335–346CrossRefPubMed Vlcek C, Paces V, Schwyzer M (1989) Nucleotide sequence of the pseudorabies virus immediate early gene, encoding a strong transactivator protein. Virus Genes 2:335–346CrossRefPubMed
39.
Zurück zum Zitat Walboomers JMM, Ter Schegget J (1976) A new method for the isolation of herpes simplex virus type 2 DNA. Virology 79:256–258CrossRef Walboomers JMM, Ter Schegget J (1976) A new method for the isolation of herpes simplex virus type 2 DNA. Virology 79:256–258CrossRef
40.
Zurück zum Zitat Watson RJ, Colberg-Poley AM, Marcus-Sekura CJ, Carter BJ, Enquist LW (1983) Characterization of the herpes simplex virus type 1 glycoprotein D mRNA and expression of this protein in Xenopus oocytes. Nucleic Acids Res 11:1507–1522 Watson RJ, Colberg-Poley AM, Marcus-Sekura CJ, Carter BJ, Enquist LW (1983) Characterization of the herpes simplex virus type 1 glycoprotein D mRNA and expression of this protein in Xenopus oocytes. Nucleic Acids Res 11:1507–1522
42.
Zurück zum Zitat Xu G, Xu X, Li Z, He Q, Wu B, Sun S, Chen H (2004) Construction of recombinant pseudorabies virus expressing NS1 protein of Japanese encephalitis (SA14-14-2) virus and its safety and immunogenicity. Vaccine 22:1846–1853CrossRefPubMed Xu G, Xu X, Li Z, He Q, Wu B, Sun S, Chen H (2004) Construction of recombinant pseudorabies virus expressing NS1 protein of Japanese encephalitis (SA14-14-2) virus and its safety and immunogenicity. Vaccine 22:1846–1853CrossRefPubMed
43.
Zurück zum Zitat Yamada S, Shimizu M (1994) Isolation and characterization of mutants of pseudorabies virus with deletion in the immediate-early regulatory gene. Virology 199:366–375CrossRefPubMed Yamada S, Shimizu M (1994) Isolation and characterization of mutants of pseudorabies virus with deletion in the immediate-early regulatory gene. Virology 199:366–375CrossRefPubMed
Metadaten
Titel
Regulation of pseudorabies virus gG glycoprotein gene promoter independently of pseudorabies immediate early IE180 protein
verfasst von
A. L. Muñoz
M. Torres
B. Martín
L. Lerma
E. Tabarés
Publikationsdatum
01.04.2010
Verlag
Springer Vienna
Erschienen in
Archives of Virology / Ausgabe 4/2010
Print ISSN: 0304-8608
Elektronische ISSN: 1432-8798
DOI
https://doi.org/10.1007/s00705-010-0613-4

Weitere Artikel der Ausgabe 4/2010

Archives of Virology 4/2010 Zur Ausgabe

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Echinokokkose medikamentös behandeln oder operieren?

06.05.2024 DCK 2024 Kongressbericht

Die Therapie von Echinokokkosen sollte immer in spezialisierten Zentren erfolgen. Eine symptomlose Echinokokkose kann – egal ob von Hunde- oder Fuchsbandwurm ausgelöst – konservativ erfolgen. Wenn eine Op. nötig ist, kann es sinnvoll sein, vorher Zysten zu leeren und zu desinfizieren. 

Aquatherapie bei Fibromyalgie wirksamer als Trockenübungen

03.05.2024 Fibromyalgiesyndrom Nachrichten

Bewegungs-, Dehnungs- und Entspannungsübungen im Wasser lindern die Beschwerden von Patientinnen mit Fibromyalgie besser als das Üben auf trockenem Land. Das geht aus einer spanisch-brasilianischen Vergleichsstudie hervor.

Wo hapert es noch bei der Umsetzung der POMGAT-Leitlinie?

03.05.2024 DCK 2024 Kongressbericht

Seit November 2023 gibt es evidenzbasierte Empfehlungen zum perioperativen Management bei gastrointestinalen Tumoren (POMGAT) auf S3-Niveau. Vieles wird schon entsprechend der Empfehlungen durchgeführt. Wo es im Alltag noch hapert, zeigt eine Umfrage in einem Klinikverbund.

Das Risiko für Vorhofflimmern in der Bevölkerung steigt

02.05.2024 Vorhofflimmern Nachrichten

Das Risiko, im Lauf des Lebens an Vorhofflimmern zu erkranken, ist in den vergangenen 20 Jahren gestiegen: Laut dänischen Zahlen wird es drei von zehn Personen treffen. Das hat Folgen weit über die Schlaganfallgefährdung hinaus.

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.