VP8, the Major Tegument Protein of Bovine Herpesvirus-1, Is Partially Packaged during Early Tegument Formation in a VP22-Dependent Manner
Abstract
:1. Introduction
2. Materials and Methods
2.1. Cell Lines and Viruses
2.2. Plasmids and Antibodies
2.3. Isolation of Nuclear Membrane
2.4. Isolation of Primary Enveloped Virions
2.5. Purification of Mature Virus
2.6. Gel Electrophoresis
2.7. Mass Spectrometry Sample Preparation and Analysis
2.8. Transfections
2.9. Preparation of Cell Lysates
2.10. Immunoprecipitation and Western Blotting
2.11. Confocal Microscopy
3. Results
3.1. VP8 and VP22 Are Packaged at the Early Tegumentation Stage
3.2. VP8 Interacts with VP22 in the Perinuclear Region and in Mature Virus in BoHV-1-Infected Cells and in BoHV1-YmVP8-Infected Cells
3.3. VP8 Is Absent in the Primary Enveloped Virus in the Absence of VP22
3.4. VP8 and VP22 Interact with one Another Outside the Context of Infection
3.5. VP8 and VP22 Localise in the Perinuclear Region in Cells Infected with Wild-Type BoHV-1 or BoHV-1YmVP8
3.6. VP22 Co-Localises with VP8
3.7. VP8 Is not Localised to the Perinuclear Region in BoHV-1ΔUL49-Infected Cells
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Gene | Protein | Present in Primary Enveloped Virus | Present in Mature Virus | Molecular Weight (kDa) | Number of Unique Peptides | Peptide Coverage (%) |
---|---|---|---|---|---|---|
Glycoproteins | ||||||
UL27 | Glycoprotein B (gB) | x | √ | 101.1 | 200 | 63 |
UL44 | Glycoprotein C (gC) | x | √ | 55.3 | 134 | 60 |
US6 | Glycoprotein D (gD) | x | √ | 44.5 | 19 | 73 |
US8 | Glycoprotein E (gE) | x | √ | 61.1 | 65 | 46 |
UL22 | Glycoprotein H (gH) | x | √ | 88.3 | 82 | 57 |
UL1 | Glycoprotein L (gL) | x | √ | 17.1 | 8 | 23 |
US4 | Glycoprotein G (gG) | x | √ | 46.5 | 67 | 48 |
UL10 | Glycoprotein M (gM) | x | √ | 45.5 | 6 | 13 |
UL49.5 | Glycoprotein N (gN) | x | √ | 10.2 | 5 | 25 |
UL53 | Glycoprotein K (gK) | x | √ | 35.8 | 5 | 25 |
US7 | Glycoprotein I (gI) | x | √ | 39.9 | 100 | 45 |
Envelope Proteins | ||||||
UL20 | pUL20 | x | √ | 25.6 | 5 | 37 |
UL34 | pUL34 | x | √ | 27.1 | 55 | 54 |
UL43 | pUL43 | x | √ | 36.9 | 9 | 25 |
Capsid Proteins | ||||||
UL6 | Capsid portal protein | √ | √ | 75.1 | 30 | 86 |
UL18 | Capsid triplex subunit | √ | √ | 33.3 | 37 | 46 |
UL19 | VP5 major capsid protein | √ | √ | 105.1 | 106 | 52 |
Tegument Proteins | ||||||
UL2 | pUL2 | √ | x | 33.8 | 8 | 18 |
UL7 | pUL7 | x | √ | 32.5 | 21 | 63 |
UL11 | pUL11 | x | √ | 9.7 | 15 | 96 |
UL14 | pUL14 | x | √ | 23.2 | 31 | 76 |
UL16 | pUL16 | x | √ | 36.4 | 12 | 25 |
UL17 | Cleavage protein | x | √ | 72.6 | 59 | 83 |
UL21 | pUL21 | × | √ | 60.2 | 47 | 48 |
UL25 | Cleavage protein | × | √ | 63.1 | 62 | 63 |
UL26 | Maturational protease | √ | √ | 63.7 | 14 | 46 |
UL29 | Major DNA binding protein | √ | √ | 78.9 | 13 | 29 |
UL31 | pUL31 | x | √ | 39.5 | 35 | 72 |
UL32 | pUL32 | x | √ | 62.9 | 4 | 23 |
UL36 | Egress regulating protein | √ | x | 327.2 | 79 | 57 |
UL37 | Egress regulating protein | √ | x | 105.9 | 86 | 67 |
UL39 | pUL39 | √ | √ | 86.1 | 27 | 58 |
UL40 | pUL40 | √ | √ | 31.1 | 15 | 57 |
UL41 | Host shut off protein | x | √ | 50.1 | 41 | 65 |
UL42 | DNA processivity protein | x | √ | 42.6 | 67 | 63 |
UL46 | VP11/12 | x | √ | 77.6 | 26 | 38 |
UL47 | VP8 | √ | √ | 80.7 | 47 | 65 |
UL48 | VP16 | x | √ | 54.1 | 55 | 58 |
UL49 | VP22 | √ | √ | 26.8 | 148 | 84 |
UL50 | pUL50 | x | √ | 34.1 | 18 | 63 |
UL51 | pUL51 | x | √ | 24.9 | 16 | 86 |
UL54 | bICP27 | x | √ | 43.3 | 26 | 63 |
US1.67 | pUS1.67 | x | √ | 27.2 | 28 | 44 |
US3 | Serine/threonine kinase | x | √ | 49.9 | 27 | 48 |
Host Proteins | ||||||
HSP70 | x | √ | 70.8 | 4 | 18 | |
Eukaryotic initiation factor 4H | x | √ | 30.8 | 26 | 18 | |
Annexin | x | √ | 38.9 | 15 | 75 | |
Alpha tubulin | x | √ | 50 | 5 | 23 | |
Beta actin | x | √ | 40.3 | 9 | 13 | |
Histone | √ | √ | 13.9 | 5 | 29 | |
PCNA | √ | √ | 28.8 | 11 | 26 |
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Sucharita, S.; Zhang, K.; van Drunen Littel-van den Hurk, S. VP8, the Major Tegument Protein of Bovine Herpesvirus-1, Is Partially Packaged during Early Tegument Formation in a VP22-Dependent Manner. Viruses 2021, 13, 1854. https://doi.org/10.3390/v13091854
Sucharita S, Zhang K, van Drunen Littel-van den Hurk S. VP8, the Major Tegument Protein of Bovine Herpesvirus-1, Is Partially Packaged during Early Tegument Formation in a VP22-Dependent Manner. Viruses. 2021; 13(9):1854. https://doi.org/10.3390/v13091854
Chicago/Turabian StyleSucharita, Soumya, Kuan Zhang, and Sylvia van Drunen Littel-van den Hurk. 2021. "VP8, the Major Tegument Protein of Bovine Herpesvirus-1, Is Partially Packaged during Early Tegument Formation in a VP22-Dependent Manner" Viruses 13, no. 9: 1854. https://doi.org/10.3390/v13091854
APA StyleSucharita, S., Zhang, K., & van Drunen Littel-van den Hurk, S. (2021). VP8, the Major Tegument Protein of Bovine Herpesvirus-1, Is Partially Packaged during Early Tegument Formation in a VP22-Dependent Manner. Viruses, 13(9), 1854. https://doi.org/10.3390/v13091854