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Published in: Archives of Virology 11/2012

01-11-2012 | Original Article

Novel serological tools for detection of Thottapalayam virus, a Soricomorpha-borne hantavirus

Authors: Mathias Schlegel, Erdenesaikhan Tegshduuren, Kumiko Yoshimatsu, Rasa Petraityte, Kestutis Sasnauskas, Bärbel Hammerschmidt, Robert Friedrich, Marc Mertens, Martin H. Groschup, Satoru Arai, Rika Endo, Kenta Shimizu, Takaaki Koma, Shumpei Yasuda, Chiaki Ishihara, Rainer G. Ulrich, Jiro Arikawa, Bernd Köllner

Published in: Archives of Virology | Issue 11/2012

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Abstract

We developed serological tools for the detection of hantavirus-specific antibodies and hantavirus antigens in shrews. The work was focussed to generate Thottapalayam virus (TPMV)-specific monoclonal antibodies (mAbs) and anti-shrew immunoglobulin G (IgG) antibodies. The mAbs against TPMV nucleocapsid (N) protein were produced after immunization of BALB/c mice with recombinant TPMV N proteins expressed in Escherichia coli, baculovirus and Saccharomyces cerevisiae-mediated expression systems. In total, six TPMV N-protein-specific mAbs were generated that showed a characteristic fluorescent pattern in indirect immunofluorescence assay (IFA) using TPMV-infected Vero cells. Out of the six mAbs tested, five showed no cross-reaction to rodent-associated hantaviruses (Hantaan, Seoul, Puumala, Tula, Dobrava-Belgrade and Sin Nombre viruses) in IFA and enzyme-linked immunosorbent assay (ELISA), although one mAb reacted to Sin Nombre virus in IFA. None of the mAbs cross-reacted with an amino-terminal segment of the shrew-borne Asama virus N protein. Anti-shrew-IgG sera were prepared after immunization of rabbits and BALB/c-mice with protein-G-purified shrew IgG. TPMV-N-protein-specific sera were raised by immunisation of Asian house shrews (Suncus murinus) with purified yeast-expressed TPMV N protein. Using these tools, an indirect ELISA was developed to detect TPMV-N-protein-specific antibodies in the sera of shrews. Using an established serological assay, high TPMV N protein specific antibody titres were measured in the sera of TPMV-N-protein-immunized and experimentally TPMV-infected shrews, whereas no cross-reactivity to other hantavirus N proteins was found. Therefore, the generated mAbs and the established ELISA system represent useful serological tools to detect TPMV, TPMV-related virus antigens or hantavirus-specific antibodies in hantavirus-infected shrews.
Literature
1.
go back to reference Arai S, Song JW, Sumibcay L, Bennett SN, Nerurkar VR, Parmenter C, Cook JA, Yates TL, Yanagihara R (2007) Hantavirus in northern short-tailed shrew, United States. Emerg Infect Dis 13:1420–1423PubMedCrossRef Arai S, Song JW, Sumibcay L, Bennett SN, Nerurkar VR, Parmenter C, Cook JA, Yates TL, Yanagihara R (2007) Hantavirus in northern short-tailed shrew, United States. Emerg Infect Dis 13:1420–1423PubMedCrossRef
2.
go back to reference Arai S, Bennett SN, Sumibcay L, Cook JA, Song JW, Hope A, Parmenter C, Nerurkar VR, Yates TL, Yanagihara R (2008) Phylogenetically distinct hantaviruses in the masked shrew (Sorex cinereus) and dusky shrew (Sorex monticolus) in the United States. Am J Trop Med Hyg 78:348–351PubMed Arai S, Bennett SN, Sumibcay L, Cook JA, Song JW, Hope A, Parmenter C, Nerurkar VR, Yates TL, Yanagihara R (2008) Phylogenetically distinct hantaviruses in the masked shrew (Sorex cinereus) and dusky shrew (Sorex monticolus) in the United States. Am J Trop Med Hyg 78:348–351PubMed
3.
go back to reference Arikawa J, Schmaljohn AL, Dalrymple JM, Schmaljohn CS (1989) Characterization of Hantaan virus envelope glycoprotein antigenic determinants defined by monoclonal antibodies. J Gen Virol 70(Pt 3):615–624PubMedCrossRef Arikawa J, Schmaljohn AL, Dalrymple JM, Schmaljohn CS (1989) Characterization of Hantaan virus envelope glycoprotein antigenic determinants defined by monoclonal antibodies. J Gen Virol 70(Pt 3):615–624PubMedCrossRef
4.
go back to reference Biltueva LS, Rogatcheva MB, Perelman PL, Borodin PM, Oda SI, Koyasu K, Harada M, Zima J, Graphodatsky AS (2001) Chromosomal phylogeny of certain shrews of the genera Crocidura and Suncus (Insectivora). J Zoological Syst Evol Res 39:69–76CrossRef Biltueva LS, Rogatcheva MB, Perelman PL, Borodin PM, Oda SI, Koyasu K, Harada M, Zima J, Graphodatsky AS (2001) Chromosomal phylogeny of certain shrews of the genera Crocidura and Suncus (Insectivora). J Zoological Syst Evol Res 39:69–76CrossRef
5.
go back to reference Carey DE, Reuben R, Panicker KN, Shope RE, Myers RM (1971) Thottapalayam virus: a presumptive arbovirus isolated from a shrew in India. Indian J Med Res 59:1758–1760PubMed Carey DE, Reuben R, Panicker KN, Shope RE, Myers RM (1971) Thottapalayam virus: a presumptive arbovirus isolated from a shrew in India. Indian J Med Res 59:1758–1760PubMed
6.
go back to reference Chu YK, Rossi C, Leduc JW, Lee HW, Schmaljohn CS, Dalrymple JM (1994) Serological relationships among viruses in the Hantavirus genus, family Bunyaviridae. Virology 198:196–204PubMedCrossRef Chu YK, Rossi C, Leduc JW, Lee HW, Schmaljohn CS, Dalrymple JM (1994) Serological relationships among viruses in the Hantavirus genus, family Bunyaviridae. Virology 198:196–204PubMedCrossRef
7.
go back to reference Dantas JR Jr, Okuno Y, Asada H, Tamura M, Takahashi M, Tanishita O, Takahashi Y, Kurata T, Yamanishi K (1986) Characterization of glycoproteins of viruses causing hemorrhagic fever with renal syndrome (HFRS) using monoclonal antibodies. Virology 151:379–384PubMedCrossRef Dantas JR Jr, Okuno Y, Asada H, Tamura M, Takahashi M, Tanishita O, Takahashi Y, Kurata T, Yamanishi K (1986) Characterization of glycoproteins of viruses causing hemorrhagic fever with renal syndrome (HFRS) using monoclonal antibodies. Virology 151:379–384PubMedCrossRef
8.
go back to reference Dzagurova T, Tkachenko E, Slonova R, Ivanov L, Ivanidze E, Markeshin S, Dekonenko A, Niklasson B, Lundkvist A (1995) Antigenic relationships of hantavirus strains analysed by monoclonal antibodies. Arch Virol 140:1763–1773PubMedCrossRef Dzagurova T, Tkachenko E, Slonova R, Ivanov L, Ivanidze E, Markeshin S, Dekonenko A, Niklasson B, Lundkvist A (1995) Antigenic relationships of hantavirus strains analysed by monoclonal antibodies. Arch Virol 140:1763–1773PubMedCrossRef
9.
go back to reference Elgh F, Wadell G, Juto P (1995) Comparison of the kinetics of Puumala virus specific IgM and IgG antibody responses in nephropathia epidemica as measured by a recombinant antigen-based enzyme-linked immunosorbent assay and an immunofluorescence test. J Med Virol 45:146–150PubMedCrossRef Elgh F, Wadell G, Juto P (1995) Comparison of the kinetics of Puumala virus specific IgM and IgG antibody responses in nephropathia epidemica as measured by a recombinant antigen-based enzyme-linked immunosorbent assay and an immunofluorescence test. J Med Virol 45:146–150PubMedCrossRef
10.
go back to reference Franko MC, Gibbs CJ Jr, Lee PW, Gajdusek DC (1983) Monoclonal antibodies specific for Hantaan virus. P Natl Acad Sci USA 80:4149–4153CrossRef Franko MC, Gibbs CJ Jr, Lee PW, Gajdusek DC (1983) Monoclonal antibodies specific for Hantaan virus. P Natl Acad Sci USA 80:4149–4153CrossRef
11.
go back to reference Jonsson CB, Schmaljohn CS (2001) Replication of hantaviruses. Curr Top Microbiol Immunol 256:15–32PubMedCrossRef Jonsson CB, Schmaljohn CS (2001) Replication of hantaviruses. Curr Top Microbiol Immunol 256:15–32PubMedCrossRef
12.
go back to reference Kang HJ, Arai S, Hope AG, Song JW, Cook JA, Yanagihara R (2009) Genetic diversity and phylogeography of Seewis virus in the Eurasian common shrew in Finland and Hungary. Virol J 6:208PubMedCrossRef Kang HJ, Arai S, Hope AG, Song JW, Cook JA, Yanagihara R (2009) Genetic diversity and phylogeography of Seewis virus in the Eurasian common shrew in Finland and Hungary. Virol J 6:208PubMedCrossRef
13.
go back to reference Kang HJ, Arai S, Hope AG, Cook JA, Yanagihara R (2010) Novel hantavirus in the flat-skulled shrew (Sorex roboratus). Vector Borne Zoonotic Dis 10:593–597PubMedCrossRef Kang HJ, Arai S, Hope AG, Cook JA, Yanagihara R (2010) Novel hantavirus in the flat-skulled shrew (Sorex roboratus). Vector Borne Zoonotic Dis 10:593–597PubMedCrossRef
14.
go back to reference Kang HJ, Bennett SN, Hope AG, Cook JA, Yanagihara R (2011) Shared ancestry between a newfound mole-borne hantavirus and hantaviruses harbored by cricetid rodents. J Virol 85(15):7496–7503PubMedCrossRef Kang HJ, Bennett SN, Hope AG, Cook JA, Yanagihara R (2011) Shared ancestry between a newfound mole-borne hantavirus and hantaviruses harbored by cricetid rodents. J Virol 85(15):7496–7503PubMedCrossRef
15.
go back to reference Klempa B, Fichet-Calvet E, Lecompte E, Auste B, Aniskin V, Meisel H, Denys C, Koivogui L, ter Meulen J, Kruger DH (2006) Hantavirus in African wood mouse, Guinea. Emerg Infect Dis 12:838–840PubMedCrossRef Klempa B, Fichet-Calvet E, Lecompte E, Auste B, Aniskin V, Meisel H, Denys C, Koivogui L, ter Meulen J, Kruger DH (2006) Hantavirus in African wood mouse, Guinea. Emerg Infect Dis 12:838–840PubMedCrossRef
16.
go back to reference Klempa B, Fichet-Calvet E, Lecompte E, Auste B, Aniskin V, Meisel H, Barriere P, Koivogui L, ter Meulen J, Kruger DH (2007) Novel hantavirus sequences in Shrew, Guinea. Emerg Infect Dis 13:520–522PubMedCrossRef Klempa B, Fichet-Calvet E, Lecompte E, Auste B, Aniskin V, Meisel H, Barriere P, Koivogui L, ter Meulen J, Kruger DH (2007) Novel hantavirus sequences in Shrew, Guinea. Emerg Infect Dis 13:520–522PubMedCrossRef
17.
go back to reference Koch J, Liang MF, Queitsch I, Kraus AA, Bautz EKF (2003) Human recombinant neutralizing antibodies against Hantaan virus G2 protein. Virology 308:64–73PubMedCrossRef Koch J, Liang MF, Queitsch I, Kraus AA, Bautz EKF (2003) Human recombinant neutralizing antibodies against Hantaan virus G2 protein. Virology 308:64–73PubMedCrossRef
18.
go back to reference Kucinskaite-Kodze I, Petraityte-Burneikiene R, Zvirbliene A, Hjelle B, Medina RA, Gedvilaite A, Razanskiene A, Schmidt-Chanasit J, Mertens M, Padula P, Sasnauskas K, Ulrich RG (2011) Characterization of monoclonal antibodies against hantavirus nucleocapsid protein and their use for immunohistochemistry on rodent and human samples. Arch Virol 156:443–456PubMedCrossRef Kucinskaite-Kodze I, Petraityte-Burneikiene R, Zvirbliene A, Hjelle B, Medina RA, Gedvilaite A, Razanskiene A, Schmidt-Chanasit J, Mertens M, Padula P, Sasnauskas K, Ulrich RG (2011) Characterization of monoclonal antibodies against hantavirus nucleocapsid protein and their use for immunohistochemistry on rodent and human samples. Arch Virol 156:443–456PubMedCrossRef
19.
go back to reference Liang M, Guttieri M, Lundkvist A, Schmaljohn C (1997) Baculovirus expression of a human G2-specific, neutralizing IgG monoclonal antibody to Puumala virus. Virology 235:252–260PubMedCrossRef Liang M, Guttieri M, Lundkvist A, Schmaljohn C (1997) Baculovirus expression of a human G2-specific, neutralizing IgG monoclonal antibody to Puumala virus. Virology 235:252–260PubMedCrossRef
20.
go back to reference Liang M, Mahler M, Koch J, Ji Y, Li D, Schmaljohn C, Bautz EK (2003) Generation of an HFRS patient-derived neutralizing recombinant antibody to Hantaan virus G1 protein and definition of the neutralizing domain. J Med Virol 69:99–107PubMedCrossRef Liang M, Mahler M, Koch J, Ji Y, Li D, Schmaljohn C, Bautz EK (2003) Generation of an HFRS patient-derived neutralizing recombinant antibody to Hantaan virus G1 protein and definition of the neutralizing domain. J Med Virol 69:99–107PubMedCrossRef
21.
go back to reference Lundkvist A, Fatouros A, Niklasson B (1991) Antigenic variation of European haemorrhagic fever with renal syndrome virus strains characterized using bank vole monoclonal antibodies. J Gen Virol 72(Pt 9):2097–2103PubMedCrossRef Lundkvist A, Fatouros A, Niklasson B (1991) Antigenic variation of European haemorrhagic fever with renal syndrome virus strains characterized using bank vole monoclonal antibodies. J Gen Virol 72(Pt 9):2097–2103PubMedCrossRef
22.
go back to reference Lundkvist A, Niklasson B (1992) Bank vole monoclonal antibodies against Puumala virus envelope glycoproteins: identification of epitopes involved in neutralization. Arch Virol 126:93–105PubMedCrossRef Lundkvist A, Niklasson B (1992) Bank vole monoclonal antibodies against Puumala virus envelope glycoproteins: identification of epitopes involved in neutralization. Arch Virol 126:93–105PubMedCrossRef
23.
go back to reference Lundkvist A, Horling J, Athlin L, Rosen A, Niklasson B (1993) Neutralizing human monoclonal antibodies against Puumala virus, causative agent of nephropathia epidemica: a novel method using antigen-coated magnetic beads for specific B cell isolation. J Gen Virol 74(Pt 7):1303–1310PubMedCrossRef Lundkvist A, Horling J, Athlin L, Rosen A, Niklasson B (1993) Neutralizing human monoclonal antibodies against Puumala virus, causative agent of nephropathia epidemica: a novel method using antigen-coated magnetic beads for specific B cell isolation. J Gen Virol 74(Pt 7):1303–1310PubMedCrossRef
24.
go back to reference Lundkvist A, Vapalahti O, Plyusnin A, Sjolander KB, Niklasson B, Vaheri A (1996) Characterization of Tula virus antigenic determinants defined by monoclonal antibodies raised against baculovirus-expressed nucleocapsid protein. Virus Res 45:29–44PubMedCrossRef Lundkvist A, Vapalahti O, Plyusnin A, Sjolander KB, Niklasson B, Vaheri A (1996) Characterization of Tula virus antigenic determinants defined by monoclonal antibodies raised against baculovirus-expressed nucleocapsid protein. Virus Res 45:29–44PubMedCrossRef
25.
go back to reference Lundkvist A, Meisel H, Koletzki D, Lankinen H, Cifire F, Geldmacher A, Sibold C, Gott P, Vaheri A, Kruger DH, Ulrich R (2002) Mapping of B-cell epitopes in the nucleocapsid protein of Puumala hantavirus. Viral Immunol 15:177–192PubMedCrossRef Lundkvist A, Meisel H, Koletzki D, Lankinen H, Cifire F, Geldmacher A, Sibold C, Gott P, Vaheri A, Kruger DH, Ulrich R (2002) Mapping of B-cell epitopes in the nucleocapsid protein of Puumala hantavirus. Viral Immunol 15:177–192PubMedCrossRef
26.
go back to reference Mazzarotto GA, Raboni SM, Stella V, Carstensen S, de Noronha L, Levis S, Zanluca C, Zanetti CR, Bordignon J, Duarte dos Santos CN (2009) Production and characterization of monoclonal antibodies against the recombinant nucleoprotein of Araucaria hantavirus. J Virol Methods 162:96–100PubMedCrossRef Mazzarotto GA, Raboni SM, Stella V, Carstensen S, de Noronha L, Levis S, Zanluca C, Zanetti CR, Bordignon J, Duarte dos Santos CN (2009) Production and characterization of monoclonal antibodies against the recombinant nucleoprotein of Araucaria hantavirus. J Virol Methods 162:96–100PubMedCrossRef
27.
go back to reference Mertens M, Hofmann J, Petraityte-Burneikiene R, Ziller M, Sasnauskas K, Friedrich R, Niederstrasser O, Kruger DH, Groschup MH, Petri E, Werdermann S, Ulrich RG (2011) Seroprevalence study in forestry workers of a non-endemic region in eastern Germany reveals infections by Tula and Dobrava-Belgrade hantaviruses. Med Microbiol Immunol 200:263–268PubMedCrossRef Mertens M, Hofmann J, Petraityte-Burneikiene R, Ziller M, Sasnauskas K, Friedrich R, Niederstrasser O, Kruger DH, Groschup MH, Petri E, Werdermann S, Ulrich RG (2011) Seroprevalence study in forestry workers of a non-endemic region in eastern Germany reveals infections by Tula and Dobrava-Belgrade hantaviruses. Med Microbiol Immunol 200:263–268PubMedCrossRef
28.
go back to reference Mertens M, Kindler E, Emmerich P, Esser J, Wagner-Wiening C, Wolfel R, Petraityte-Burneikiene R, Schmidt-Chanasit J, Zvirbliene A, Groschup MH, Dobler G, Pfeffer M, Heckel G, Ulrich RG, Essbauer SS (2011) Phylogenetic analysis of Puumala virus subtype Bavaria, characterization and diagnostic use of its recombinant nucleocapsid protein. Virus Genes Mertens M, Kindler E, Emmerich P, Esser J, Wagner-Wiening C, Wolfel R, Petraityte-Burneikiene R, Schmidt-Chanasit J, Zvirbliene A, Groschup MH, Dobler G, Pfeffer M, Heckel G, Ulrich RG, Essbauer SS (2011) Phylogenetic analysis of Puumala virus subtype Bavaria, characterization and diagnostic use of its recombinant nucleocapsid protein. Virus Genes
29.
go back to reference Motokawa M, Suzuki H, Harada M, Lin L-K, Koyasu K, S-I Oda (2000) Phylogenetic relationships among East Asian species of Crocidura (Mammalia, Insectivora) inferred from mitochondrial cytochrome b gene sequences. Zoological Sci (Tokyo) 17:497–504 Motokawa M, Suzuki H, Harada M, Lin L-K, Koyasu K, S-I Oda (2000) Phylogenetic relationships among East Asian species of Crocidura (Mammalia, Insectivora) inferred from mitochondrial cytochrome b gene sequences. Zoological Sci (Tokyo) 17:497–504
30.
go back to reference Okumura M, Yoshimatsu K, Kumperasart S, Nakamura I, Ogino M, Taruishi M, Sungdee A, Pattamadilok S, Ibrahim IN, Erlina S, Agui T, Yanagihara R, Arikawa J (2007) Development of serological assays for Thottapalayam virus, an insectivore-borne Hantavirus. Clin Vaccine Immunol 14:173–181PubMedCrossRef Okumura M, Yoshimatsu K, Kumperasart S, Nakamura I, Ogino M, Taruishi M, Sungdee A, Pattamadilok S, Ibrahim IN, Erlina S, Agui T, Yanagihara R, Arikawa J (2007) Development of serological assays for Thottapalayam virus, an insectivore-borne Hantavirus. Clin Vaccine Immunol 14:173–181PubMedCrossRef
31.
go back to reference Plyusnin A, Morzunov SP (2001) Virus evolution and genetic diversity of hantaviruses and their rodent hosts. Curr Top Microbiol Immunol 256:47–75PubMedCrossRef Plyusnin A, Morzunov SP (2001) Virus evolution and genetic diversity of hantaviruses and their rodent hosts. Curr Top Microbiol Immunol 256:47–75PubMedCrossRef
32.
go back to reference Ramsden C, Holmes EC, Charleston MA (2009) Hantavirus evolution in relation to its rodent and insectivore hosts: no evidence for codivergence. Mol Biol Evol 26:143–153PubMedCrossRef Ramsden C, Holmes EC, Charleston MA (2009) Hantavirus evolution in relation to its rodent and insectivore hosts: no evidence for codivergence. Mol Biol Evol 26:143–153PubMedCrossRef
33.
go back to reference Razanskiene A, Schmidt J, Geldmacher A, Ritzi A, Niedrig M, Lundkvist A, Kruger DH, Meisel H, Sasnauskas K, Ulrich R (2004) High yields of stable and highly pure nucleocapsid proteins of different hantaviruses can be generated in the yeast Saccharomyces cerevisiae. J Biotechnol 111:319–333PubMedCrossRef Razanskiene A, Schmidt J, Geldmacher A, Ritzi A, Niedrig M, Lundkvist A, Kruger DH, Meisel H, Sasnauskas K, Ulrich R (2004) High yields of stable and highly pure nucleocapsid proteins of different hantaviruses can be generated in the yeast Saccharomyces cerevisiae. J Biotechnol 111:319–333PubMedCrossRef
34.
go back to reference Ruo SL, Sanchez A, Elliott LH, Brammer LS, McCormick JB, Fisher-Hoch SP (1991) Monoclonal antibodies to three strains of hantaviruses: Hantaan, R22, and Puumala. Arch Virol 119:1–11PubMedCrossRef Ruo SL, Sanchez A, Elliott LH, Brammer LS, McCormick JB, Fisher-Hoch SP (1991) Monoclonal antibodies to three strains of hantaviruses: Hantaan, R22, and Puumala. Arch Virol 119:1–11PubMedCrossRef
35.
go back to reference Salonen EM, Parren PW, Graus YF, Lundkvist A, Fisicaro P, Vapalahti O, Kallio-Kokko H, Vaheri A, Burton DR (1998) Human recombinant Puumala virus antibodies: cross-reaction with other hantaviruses and use in diagnostics. J Gen Virol 79(Pt 4):659–665PubMed Salonen EM, Parren PW, Graus YF, Lundkvist A, Fisicaro P, Vapalahti O, Kallio-Kokko H, Vaheri A, Burton DR (1998) Human recombinant Puumala virus antibodies: cross-reaction with other hantaviruses and use in diagnostics. J Gen Virol 79(Pt 4):659–665PubMed
36.
go back to reference Schmidt-Chanasit J, Essbauer S, Petraityte R, Yoshimatsu K, Tackmann K, Conraths FJ, Sasnauskas K, Arikawa J, Thomas A, Pfeffer M, Scharninghausen JJ, Splettstoesser W, Wenk M, Heckel G, Ulrich RG (2010) Extensive host sharing of central European Tula virus. J Virol 84:459–474PubMedCrossRef Schmidt-Chanasit J, Essbauer S, Petraityte R, Yoshimatsu K, Tackmann K, Conraths FJ, Sasnauskas K, Arikawa J, Thomas A, Pfeffer M, Scharninghausen JJ, Splettstoesser W, Wenk M, Heckel G, Ulrich RG (2010) Extensive host sharing of central European Tula virus. J Virol 84:459–474PubMedCrossRef
37.
go back to reference Schlegel M, Radosa L, Rosenfeld UM, Schmidt S, Triebenbacher C, Löhr PW, Fuchs D, Heroldová M, Jánová E, Stanko M, Mošanský L, Fričová J, Pejčoch M, Suchomel J, Purchart L, Groschup MH, Krüger DH, Klempa B, Ulrich RG (2012) Broad geographical distribution and high genetic diversity of shrew-borne Seewis hantavirus in Central Europe. Virus Genes [Epub ahead of print] Schlegel M, Radosa L, Rosenfeld UM, Schmidt S, Triebenbacher C, Löhr PW, Fuchs D, Heroldová M, Jánová E, Stanko M, Mošanský L, Fričová J, Pejčoch M, Suchomel J, Purchart L, Groschup MH, Krüger DH, Klempa B, Ulrich RG (2012) Broad geographical distribution and high genetic diversity of shrew-borne Seewis hantavirus in Central Europe. Virus Genes [Epub ahead of print]
38.
go back to reference Song JW, Baek LJ, Schmaljohn CS, Yanagihara R (2007) Thottapalayam virus, a prototype shrewborne hantavirus. Emerg Infect Dis 13:980–985PubMedCrossRef Song JW, Baek LJ, Schmaljohn CS, Yanagihara R (2007) Thottapalayam virus, a prototype shrewborne hantavirus. Emerg Infect Dis 13:980–985PubMedCrossRef
39.
go back to reference Song JW, Gu SH, Bennett SN, Arai S, Puorger M, Hilbe M, Yanagihara R (2007) Seewis virus, a genetically distinct hantavirus in the Eurasian common shrew (Sorex araneus). Virol J 4:114PubMedCrossRef Song JW, Gu SH, Bennett SN, Arai S, Puorger M, Hilbe M, Yanagihara R (2007) Seewis virus, a genetically distinct hantavirus in the Eurasian common shrew (Sorex araneus). Virol J 4:114PubMedCrossRef
40.
go back to reference Song JW, Kang HJ, Gu SH, Moon SS, Bennett SN, Song KJ, Baek LJ, Kim HC, O’Guinn ML, Chong ST, Klein TA, Yanagihara R (2009) Characterization of Imjin virus, a newly isolated hantavirus from the Ussuri white-toothed shrew (Crocidura lasiura). J Virol 83:6184–6191PubMedCrossRef Song JW, Kang HJ, Gu SH, Moon SS, Bennett SN, Song KJ, Baek LJ, Kim HC, O’Guinn ML, Chong ST, Klein TA, Yanagihara R (2009) Characterization of Imjin virus, a newly isolated hantavirus from the Ussuri white-toothed shrew (Crocidura lasiura). J Virol 83:6184–6191PubMedCrossRef
41.
go back to reference Sugiyama K, Morikawa S, Matsuura Y, Tkachenko EA, Morita C, Komatsu T, Akao Y, Kitamura T (1987) Four serotypes of haemorrhagic fever with renal syndrome viruses identified by polyclonal and monoclonal antibodies. J Gen Virol 68(Pt 4):979–987PubMedCrossRef Sugiyama K, Morikawa S, Matsuura Y, Tkachenko EA, Morita C, Komatsu T, Akao Y, Kitamura T (1987) Four serotypes of haemorrhagic fever with renal syndrome viruses identified by polyclonal and monoclonal antibodies. J Gen Virol 68(Pt 4):979–987PubMedCrossRef
42.
go back to reference Tischler ND, Rosemblatt M, Valenzuela PD (2008) Characterization of cross-reactive and serotype-specific epitopes on the nucleocapsid proteins of hantaviruses. Virus Res 135:1–9PubMedCrossRef Tischler ND, Rosemblatt M, Valenzuela PD (2008) Characterization of cross-reactive and serotype-specific epitopes on the nucleocapsid proteins of hantaviruses. Virus Res 135:1–9PubMedCrossRef
43.
go back to reference Yadav PD, Vincent MJ, Nichol ST (2007) Thottapalayam virus is genetically distant to the rodent-borne hantaviruses, consistent with its isolation from the Asian house shrew (Suncus murinus). Virol J 4:80PubMedCrossRef Yadav PD, Vincent MJ, Nichol ST (2007) Thottapalayam virus is genetically distant to the rodent-borne hantaviruses, consistent with its isolation from the Asian house shrew (Suncus murinus). Virol J 4:80PubMedCrossRef
44.
go back to reference Yamada T, Hjelle B, Lanzi R, Morris C, Anderson B, Jenison S (1995) Antibody responses to Four Corners hantavirus infections in the deer mouse (Peromyscus maniculatus): identification of an immunodominant region of the viral nucleocapsid protein. J Virol 69:1939–1943PubMed Yamada T, Hjelle B, Lanzi R, Morris C, Anderson B, Jenison S (1995) Antibody responses to Four Corners hantavirus infections in the deer mouse (Peromyscus maniculatus): identification of an immunodominant region of the viral nucleocapsid protein. J Virol 69:1939–1943PubMed
45.
go back to reference Yamanishi K, Dantas JR Jr, Takahashi M, Yamanouchi T, Domae K, Takahashi Y, Tanishita O (1984) Antigenic differences between two viruses, isolated in Japan and Korea, that cause hemorrhagic fever with renal syndrome. J Virol 52:231–237PubMed Yamanishi K, Dantas JR Jr, Takahashi M, Yamanouchi T, Domae K, Takahashi Y, Tanishita O (1984) Antigenic differences between two viruses, isolated in Japan and Korea, that cause hemorrhagic fever with renal syndrome. J Virol 52:231–237PubMed
46.
go back to reference Yashina LN, Abramov SA, Gutorov VV, Dupal TA, Krivopalov AV, Panov VV, Danchinova GA, Vinogradov VV, Luchnikova EM, Hay J, Kang HJ, Yanagihara R (2010) Seewis virus: phylogeography of a shrew-borne hantavirus in Siberia, Russia. Vector Borne Zoonotic Dis 10:585–591PubMedCrossRef Yashina LN, Abramov SA, Gutorov VV, Dupal TA, Krivopalov AV, Panov VV, Danchinova GA, Vinogradov VV, Luchnikova EM, Hay J, Kang HJ, Yanagihara R (2010) Seewis virus: phylogeography of a shrew-borne hantavirus in Siberia, Russia. Vector Borne Zoonotic Dis 10:585–591PubMedCrossRef
47.
go back to reference Yoshimatsu K, Arikawa J, Kariwa H (1993) Application of a recombinant baculovirus expressing hantavirus nucleocapsid protein as a diagnostic antigen in IFA test: cross reactivities among 3 serotypes of hantavirus which causes hemorrhagic fever with renal syndrome (HFRS). J Vet Med Sci 55:1047–1050PubMedCrossRef Yoshimatsu K, Arikawa J, Kariwa H (1993) Application of a recombinant baculovirus expressing hantavirus nucleocapsid protein as a diagnostic antigen in IFA test: cross reactivities among 3 serotypes of hantavirus which causes hemorrhagic fever with renal syndrome (HFRS). J Vet Med Sci 55:1047–1050PubMedCrossRef
48.
go back to reference Yoshimatsu K, Arikawa J, Yoshida R, Li H, Yoo YC, Kariwa H, Hashimoto N, Kakinuma M, Nobunaga T, Azuma I (1995) Production of recombinant hantavirus nucleocapsid protein expressed in silkworm larvae and its use as a diagnostic antigen in detecting antibodies in serum from infected rats. Lab Anim Sci 45:641–646PubMed Yoshimatsu K, Arikawa J, Yoshida R, Li H, Yoo YC, Kariwa H, Hashimoto N, Kakinuma M, Nobunaga T, Azuma I (1995) Production of recombinant hantavirus nucleocapsid protein expressed in silkworm larvae and its use as a diagnostic antigen in detecting antibodies in serum from infected rats. Lab Anim Sci 45:641–646PubMed
49.
go back to reference Yoshimatsu K, Arikawa J, Tamura M, Yoshida R, Lundkvist A, Niklasson B, Kariwa H, Azuma I (1996) Characterization of the nucleocapsid protein of Hantaan virus strain 76–118 using monoclonal antibodies. J Gen Virol 77(Pt 4):695–704PubMedCrossRef Yoshimatsu K, Arikawa J, Tamura M, Yoshida R, Lundkvist A, Niklasson B, Kariwa H, Azuma I (1996) Characterization of the nucleocapsid protein of Hantaan virus strain 76–118 using monoclonal antibodies. J Gen Virol 77(Pt 4):695–704PubMedCrossRef
50.
go back to reference Yu S, Liang M, Fan B, Xu H, Li C, Zhang Q, Li D, Tang B, Li S, Dai Y, Wang M, Zheng M, Yan B, Zhu Q, Li N (2006) Maternally derived recombinant human anti-hantavirus monoclonal antibodies are transferred to mouse offspring during lactation and neutralize virus in vitro. J Virol 80:4183–4186PubMedCrossRef Yu S, Liang M, Fan B, Xu H, Li C, Zhang Q, Li D, Tang B, Li S, Dai Y, Wang M, Zheng M, Yan B, Zhu Q, Li N (2006) Maternally derived recombinant human anti-hantavirus monoclonal antibodies are transferred to mouse offspring during lactation and neutralize virus in vitro. J Virol 80:4183–4186PubMedCrossRef
51.
go back to reference Zoller LG, Yang S, Gott P, Bautz EK, Darai G (1993) A novel mu-capture enzyme-linked immunosorbent assay based on recombinant proteins for sensitive and specific diagnosis of hemorrhagic fever with renal syndrome. J Clin Microbiol 31:1194–1199PubMed Zoller LG, Yang S, Gott P, Bautz EK, Darai G (1993) A novel mu-capture enzyme-linked immunosorbent assay based on recombinant proteins for sensitive and specific diagnosis of hemorrhagic fever with renal syndrome. J Clin Microbiol 31:1194–1199PubMed
52.
go back to reference Zvirbliene A, Samonskyte L, Gedvilaite A, Voronkova T, Ulrich R, Sasnauskas K (2006) Generation of monoclonal antibodies of desired specificity using chimeric polyomavirus-derived virus-like particles. J Immunol Methods 311:57–70PubMedCrossRef Zvirbliene A, Samonskyte L, Gedvilaite A, Voronkova T, Ulrich R, Sasnauskas K (2006) Generation of monoclonal antibodies of desired specificity using chimeric polyomavirus-derived virus-like particles. J Immunol Methods 311:57–70PubMedCrossRef
Metadata
Title
Novel serological tools for detection of Thottapalayam virus, a Soricomorpha-borne hantavirus
Authors
Mathias Schlegel
Erdenesaikhan Tegshduuren
Kumiko Yoshimatsu
Rasa Petraityte
Kestutis Sasnauskas
Bärbel Hammerschmidt
Robert Friedrich
Marc Mertens
Martin H. Groschup
Satoru Arai
Rika Endo
Kenta Shimizu
Takaaki Koma
Shumpei Yasuda
Chiaki Ishihara
Rainer G. Ulrich
Jiro Arikawa
Bernd Köllner
Publication date
01-11-2012
Publisher
Springer Vienna
Published in
Archives of Virology / Issue 11/2012
Print ISSN: 0304-8608
Electronic ISSN: 1432-8798
DOI
https://doi.org/10.1007/s00705-012-1405-9

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