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Published in: Virology Journal 1/2021

Open Access 01-12-2021 | Short report

VP39 of Spodoptera litura multicapsid nucleopolyhedrovirus cannot efficiently rescue the nucleocapsid assembly of vp39-null Autographa californica multiple nucleopolyhedrovirus

Authors: Sainan Li, Bingming Ou, Yina Lv, Tian Gan, Haizhou Zhao, Wenhua Liu

Published in: Virology Journal | Issue 1/2021

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Abstract

Background

Autographa californica multiple nucleopolyhedrovirus (AcMNPV) vp39 is conserved in all sequenced baculovirus genomes. In previous studies, VP39 has been identified as the major capsid structure protein of baculoviruses and found to be essential for nucleocapsid assembly. The nucleocapsid composition and structure of Group I and II NPVs of the Alphabaculovirus genus are very similar. It is not clear whether the major capsid structure protein VP39 of Group I NPVs is functionally identical to or substitutable with the Group II NPV VP39. In this study, the function of Group II Spodoptera litura MNPV (SpltMNPV) VP39 in Group I AcMNPV was characterized.

Methods

Sequence alignment of AcMNPV VP39 and SpltMNPV VP39 was performed using Clustal X and edited with GeneDoc. To determine whether VP39 of Group I NPVs can be functionally substituted by Group II NPV VP39, a vp39-null AcMNPV (vAcvp39KO) and a vp39-pseudotyped AcMNPV (vAcSpltvp39:FLAG), in which the Group I AcMNPV vp39 coding sequence was replaced with that of SpltMNPV from Group II NPVs, were constructed via homologous recombination in Escherichia coli. Using an anti-FLAG monoclonal antibody, immunoblot analysis was performed to examine SpltMNPV VP39 expression. Fluorescence and light microscopy were used to monitor viral replication and infection. Viral growth curve analysis was performed using a fifty percent tissue culture infective dose (TCID50) endpoint dilution assay. Viral morphogenesis was detected using an electron microscope.

Results

Sequence alignment indicated that the N-termini of AcMNPV VP39 and SpltMNPV VP39 are relatively conserved, whereas the C-terminus of SpltMNPV VP39 lacks the domain of amino acid residues 306–334 homologous to AcMNPV VP39. Immunoblot analysis showed that SpltMNPV VP39 was expressed in vAcSpltvp39:FLAG. Fluorescence and light microscopy showed that vAcSpltvp39:FLAG did not spread by infection. Viral growth curve analysis confirmed a defect in infectious budded virion production. Electron microscopy revealed that although masses of abnormally elongated empty capsid structures existed inside the nuclei of Sf9 cells transfected with vAcSpltvp39:FLAG, no nucleocapsids were observed.

Conclusion

Altogether, our results demonstrated that VP39 from SpltMNPV cannot efficiently substitute AcMNPV VP39 during nucleocapsid assembly in AcMNPV.
Literature
1.
go back to reference Rohrmann GF. Baculovirus Molecular Biology. 4th ed. National Library of Medicine: National Center. for Biotechnology Information, Bethesda, MD; 2019. Rohrmann GF. Baculovirus Molecular Biology. 4th ed. National Library of Medicine: National Center. for Biotechnology Information, Bethesda, MD; 2019.
3.
go back to reference de Zanotto PM, Kessing BD, Maruniak JE. Phylogenetic interrelationships among baculoviruses: evolutionary rates and host associations. J Invertebr Pathol. 1993;62:147–164. de Zanotto PM, Kessing BD, Maruniak JE. Phylogenetic interrelationships among baculoviruses: evolutionary rates and host associations. J Invertebr Pathol. 1993;62:147–164.
4.
go back to reference Federici BA. Baculovirus pathogenesis. In: Miller LK, editor. The baculoviruses. New York: Plenum Press Inc; 1997. p. 33–56.CrossRef Federici BA. Baculovirus pathogenesis. In: Miller LK, editor. The baculoviruses. New York: Plenum Press Inc; 1997. p. 33–56.CrossRef
5.
go back to reference Wang Q, Bosch BJ, Vlak JM, van Oers MM, Rottier PJ, van Lent JWM. Budded baculovirus particle structure revisited. J Invertebr Pathol. 2016;134:15–22.CrossRef Wang Q, Bosch BJ, Vlak JM, van Oers MM, Rottier PJ, van Lent JWM. Budded baculovirus particle structure revisited. J Invertebr Pathol. 2016;134:15–22.CrossRef
6.
go back to reference Pearson MN, Russell RL, Rohrmann GF, Beaudreau GS. P39, a major baculovirus structural protein: immunocytochemical characterization and genetic location. Virology. 1988;167:407–13.PubMed Pearson MN, Russell RL, Rohrmann GF, Beaudreau GS. P39, a major baculovirus structural protein: immunocytochemical characterization and genetic location. Virology. 1988;167:407–13.PubMed
7.
go back to reference Federici BA. Ultrastructure of baculoviruses. In: Granados RR and Federici BA (ed.). The Biology of Baculoviruses. CRC Press, Boca Raton, Florida, 1986. Vol. I, p61–88, 2 vols. Federici BA. Ultrastructure of baculoviruses. In: Granados RR and Federici BA (ed.). The Biology of Baculoviruses. CRC Press, Boca Raton, Florida, 1986. Vol. I, p61–88, 2 vols.
8.
go back to reference Ayres MD, Howard SC, Kuzio J, Lopez-Ferber M, Possee RD. The complete DNA sequence of Autographa californica nuclear polyhedrosis virus. Virology. 1994;202:586–605.CrossRef Ayres MD, Howard SC, Kuzio J, Lopez-Ferber M, Possee RD. The complete DNA sequence of Autographa californica nuclear polyhedrosis virus. Virology. 1994;202:586–605.CrossRef
9.
go back to reference Ono C, Kamagata T, Taka H, Sahara K, Asano S, Bando H. Phenotypic grouping of 141 BmNPVs lacking viral gene sequences. Virus Res. 2012;165:197–206.CrossRef Ono C, Kamagata T, Taka H, Sahara K, Asano S, Bando H. Phenotypic grouping of 141 BmNPVs lacking viral gene sequences. Virus Res. 2012;165:197–206.CrossRef
10.
go back to reference Bai H, Hu Y, Hu X, Li J, Mu J, Zhou Y, et al. Major capsid protein of Autographa californica multiple nucleopolyhedrovirus contributes to the promoter activity of the very late viral genes. Virus Res. 2019;273:197758.CrossRef Bai H, Hu Y, Hu X, Li J, Mu J, Zhou Y, et al. Major capsid protein of Autographa californica multiple nucleopolyhedrovirus contributes to the promoter activity of the very late viral genes. Virus Res. 2019;273:197758.CrossRef
11.
go back to reference Katsuma S, Kokusho R. A conserved glycine residue is required for proper functioning of a baculovirus VP39 protein. J Virol. 2017;91. Katsuma S, Kokusho R. A conserved glycine residue is required for proper functioning of a baculovirus VP39 protein. J Virol. 2017;91.
12.
go back to reference Pearson MN, Rohrmann GF. Transfer, incorporation, and substitution of envelope fusion proteins among members of the Baculoviridae, Orthomyxoviridae, and Metaviridae (insect retrovirus) families. J Virol. 2002;76:5301–4.CrossRef Pearson MN, Rohrmann GF. Transfer, incorporation, and substitution of envelope fusion proteins among members of the Baculoviridae, Orthomyxoviridae, and Metaviridae (insect retrovirus) families. J Virol. 2002;76:5301–4.CrossRef
13.
go back to reference Pang Y, Yu J, Wang L, Hu X, Bao W, Li G, et al. Sequence analysis of the Spodoptera litura multicapsid nucleopolyhedrovirus genome. Virology. 2001;287:391–404.CrossRef Pang Y, Yu J, Wang L, Hu X, Bao W, Li G, et al. Sequence analysis of the Spodoptera litura multicapsid nucleopolyhedrovirus genome. Virology. 2001;287:391–404.CrossRef
14.
go back to reference Larkin MA, Blackshields G, Brown NP, Chenna R, McGettigan PA, McWilliam H, et al. Clustal W and Clustal X version 2.0. Bioinformatics. 2007;23:2947–2948. Larkin MA, Blackshields G, Brown NP, Chenna R, McGettigan PA, McWilliam H, et al. Clustal W and Clustal X version 2.0. Bioinformatics. 2007;23:2947–2948.
15.
go back to reference Nicholas KB, Nicholas HB, Deerfield DW. GeneDoc: analysis and visualization of genetic variation. EMBNEW News. 1997;4:14. Nicholas KB, Nicholas HB, Deerfield DW. GeneDoc: analysis and visualization of genetic variation. EMBNEW News. 1997;4:14.
16.
go back to reference Chen YR, Zhong S, Fei Z, Hashimoto Y, Xiang JZ, Zhang S, et al. The transcriptome of the baculovirus Autographa californica multiple nucleopolyhedrovirus in Trichoplusia ni cells. J Virol. 2013;87:6391–405.CrossRef Chen YR, Zhong S, Fei Z, Hashimoto Y, Xiang JZ, Zhang S, et al. The transcriptome of the baculovirus Autographa californica multiple nucleopolyhedrovirus in Trichoplusia ni cells. J Virol. 2013;87:6391–405.CrossRef
17.
go back to reference Zhu S, Wang W, Wang Y, Yuan M, Yang K. The baculovirus core gene ac83 is required for nucleocapsid assembly and per os infectivity of Autographa californica nucleopolyhedrovirus. J Virol. 2013;87:10573–86.CrossRef Zhu S, Wang W, Wang Y, Yuan M, Yang K. The baculovirus core gene ac83 is required for nucleocapsid assembly and per os infectivity of Autographa californica nucleopolyhedrovirus. J Virol. 2013;87:10573–86.CrossRef
18.
go back to reference Guan Z, Zhong L, Li C, Wu W, Yuan M, Yang K. The Autographa californica multiple nucleopolyhedrovirus ac54 gene is crucial for localization of the major capsid protein VP39 at the site of nucleocapsid assembly. J Virol. 2016;90:4115–26.CrossRef Guan Z, Zhong L, Li C, Wu W, Yuan M, Yang K. The Autographa californica multiple nucleopolyhedrovirus ac54 gene is crucial for localization of the major capsid protein VP39 at the site of nucleocapsid assembly. J Virol. 2016;90:4115–26.CrossRef
19.
go back to reference Liu C, Li Z, Wu W, Li L, Yuan M, Pan L, et al. Autographa californica multiple nucleopolyhedrovirus ac53 plays a role in nucleocapsid assembly. Virology. 2008;382:59–68.CrossRef Liu C, Li Z, Wu W, Li L, Yuan M, Pan L, et al. Autographa californica multiple nucleopolyhedrovirus ac53 plays a role in nucleocapsid assembly. Virology. 2008;382:59–68.CrossRef
20.
go back to reference Liang C, Li M, Dai X, Zhao S, Hou Y, Zhang Y, et al. Autographa californica multiple nucleopolyhedrovirus PK-1 is essential for nucleocapsid assembly. Virology. 2013;443:349–57.CrossRef Liang C, Li M, Dai X, Zhao S, Hou Y, Zhang Y, et al. Autographa californica multiple nucleopolyhedrovirus PK-1 is essential for nucleocapsid assembly. Virology. 2013;443:349–57.CrossRef
21.
go back to reference Wu W, Lin T, Pan L, Yu M, Li Z, Pang Y, et al. Autographa californica multiple nucleopolyhedrovirus nucleocapsid assembly is interrupted upon deletion of the 38K gene. J Virol. 2006;80:11475–85.CrossRef Wu W, Lin T, Pan L, Yu M, Li Z, Pang Y, et al. Autographa californica multiple nucleopolyhedrovirus nucleocapsid assembly is interrupted upon deletion of the 38K gene. J Virol. 2006;80:11475–85.CrossRef
22.
go back to reference Li K, Wang Y, Bai H, Wang Q, Song J, Zhou Y, et al. The putative pocket protein binding site of Autographa californica nucleopolyhedrovirus BV/ODV-C42 is required for virus-induced nuclear actin polymerization. J Virol. 2010;84:7857–68.CrossRef Li K, Wang Y, Bai H, Wang Q, Song J, Zhou Y, et al. The putative pocket protein binding site of Autographa californica nucleopolyhedrovirus BV/ODV-C42 is required for virus-induced nuclear actin polymerization. J Virol. 2010;84:7857–68.CrossRef
23.
go back to reference Hepp SE, Borgo GM, Ticau S, Ohkawa T, Welch MD. Baculovirus AC102 is a nucleocapsid protein that is crucial for nuclear actin polymerization and nucleocapsid morphogenesis. J Virol. 2018. Hepp SE, Borgo GM, Ticau S, Ohkawa T, Welch MD. Baculovirus AC102 is a nucleocapsid protein that is crucial for nuclear actin polymerization and nucleocapsid morphogenesis. J Virol. 2018.
24.
go back to reference Wang M, Tuladhar E, Shen S, Wang H, van Oers MM, Vlak JM, et al. Specificity of baculovirus P6.9 basic DNA-binding proteins and critical role of the C terminus in virion formation. J Virol. 2010;84:8821–8.CrossRef Wang M, Tuladhar E, Shen S, Wang H, van Oers MM, Vlak JM, et al. Specificity of baculovirus P6.9 basic DNA-binding proteins and critical role of the C terminus in virion formation. J Virol. 2010;84:8821–8.CrossRef
25.
go back to reference Vanarsdall AL, Okano K, Rohrmann GF. Characterization of the role of very late expression factor 1 in baculovirus capsid structure and DNA processing. J Virol. 2006;80:1724–33.CrossRef Vanarsdall AL, Okano K, Rohrmann GF. Characterization of the role of very late expression factor 1 in baculovirus capsid structure and DNA processing. J Virol. 2006;80:1724–33.CrossRef
26.
go back to reference Tweeten KA, Bulla LA, Consigli RA. Characterization of an extremely basic protein derived from granulosis virus nucleocapsids. J Virol. 1980;33:866–76.CrossRef Tweeten KA, Bulla LA, Consigli RA. Characterization of an extremely basic protein derived from granulosis virus nucleocapsids. J Virol. 1980;33:866–76.CrossRef
27.
go back to reference Funk CJ, Consigli RA. Phosphate cycling on the basic protein of Plodia interpunctella granulosis virus. Virology. 1993;193:396–402.CrossRef Funk CJ, Consigli RA. Phosphate cycling on the basic protein of Plodia interpunctella granulosis virus. Virology. 1993;193:396–402.CrossRef
28.
go back to reference Lai Q, Wu W, Li A, Wang W, Yuan M, Yang K. The 38K-Mediated specific dephosphorylation of the viral core protein P6.9 plays an important role in the nucleocapsid assembly of Autographa californica multiple nucleopolyhedrovirus. J Virol. 2018;92. Lai Q, Wu W, Li A, Wang W, Yuan M, Yang K. The 38K-Mediated specific dephosphorylation of the viral core protein P6.9 plays an important role in the nucleocapsid assembly of Autographa californica multiple nucleopolyhedrovirus. J Virol. 2018;92.
29.
go back to reference Lanier LM, Volkman LE. Actin binding and nucleation by Autographa california M nucleopolyhedrovirus. Virology. 1998;243:167–77.CrossRef Lanier LM, Volkman LE. Actin binding and nucleation by Autographa california M nucleopolyhedrovirus. Virology. 1998;243:167–77.CrossRef
30.
go back to reference Lu S, Ge G, Qi Y. Ha-VP39 binding to actin and the influence of F-actin on assembly of progeny virions. Arch Virol. 2004;149:2187–98.CrossRef Lu S, Ge G, Qi Y. Ha-VP39 binding to actin and the influence of F-actin on assembly of progeny virions. Arch Virol. 2004;149:2187–98.CrossRef
31.
go back to reference Braunagel SC, Summers MD. Molecular biology of the baculovirus occlusion-derived virus envelope. Curr Drug Targets. 2007;8:1084–95.CrossRef Braunagel SC, Summers MD. Molecular biology of the baculovirus occlusion-derived virus envelope. Curr Drug Targets. 2007;8:1084–95.CrossRef
32.
go back to reference Wu W, Liang H, Kan J, Liu C, Yuan M, Liang C, et al. Autographa californica multiple nucleopolyhedrovirus 38K is a novel nucleocapsid protein that interacts with VP1054, VP39, VP80, and itself. J Virol. 2008;82:12356–64.CrossRef Wu W, Liang H, Kan J, Liu C, Yuan M, Liang C, et al. Autographa californica multiple nucleopolyhedrovirus 38K is a novel nucleocapsid protein that interacts with VP1054, VP39, VP80, and itself. J Virol. 2008;82:12356–64.CrossRef
33.
go back to reference Makalliwa GA, Wang X, Zhang H, Zhang N, Chen C, Li J, et al. HearNPV pseudotyped with PIF1, 2, and 3 from MabrNPV: infectivity and complex stability. Virol Sin. 2018;33:187–96.CrossRef Makalliwa GA, Wang X, Zhang H, Zhang N, Chen C, Li J, et al. HearNPV pseudotyped with PIF1, 2, and 3 from MabrNPV: infectivity and complex stability. Virol Sin. 2018;33:187–96.CrossRef
Metadata
Title
VP39 of Spodoptera litura multicapsid nucleopolyhedrovirus cannot efficiently rescue the nucleocapsid assembly of vp39-null Autographa californica multiple nucleopolyhedrovirus
Authors
Sainan Li
Bingming Ou
Yina Lv
Tian Gan
Haizhou Zhao
Wenhua Liu
Publication date
01-12-2021
Publisher
BioMed Central
Published in
Virology Journal / Issue 1/2021
Electronic ISSN: 1743-422X
DOI
https://doi.org/10.1186/s12985-021-01553-9

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