| Literature DB >> 26311254 |
Afshin Hassani-Mehraban1, Sjoerd Creutzburg2, Luc van Heereveld3, Richard Kormelink4.
Abstract
BACKGROUND &Entities:
Mesh:
Substances:
Year: 2015 PMID: 26311254 PMCID: PMC4551372 DOI: 10.1186/s12896-015-0180-6
Source DB: PubMed Journal: BMC Biotechnol ISSN: 1472-6750 Impact factor: 2.563
Plant virus-like particles used as scaffolds for epitope presentation
| Virus | Particle shape | Candidate epitope | Reference |
|---|---|---|---|
| Potato leafroll virus (PLRV) | Spherical | His | [ |
| Tomato bushy stunt virus (TBSV) | Spherical | V3 & RTA | [ |
| Tobacco mosaic virus (TMV) | Rod | HVR1 | [ |
| Cowpea mosaic virus (CPMV) | Spherical | Nlm-1A | [ |
| Johnson grass mosaic virus (JGMV) | Filamentous | Peptide A,B,C,D | [ |
| Alfalfa mosaic virus (AMV) | Bacilliform | PA-D4s | [ |
| Physalis mottle virus (PhMV) | Spherical | 3B1, 3B2, 3AB, 3D,3ABD | [ |
| Cucumber mosaic virus (CMV) | Spherical | F & HN | [ |
| Papaya mosaic virus (PapMV) | Filamentous | p33-CTL, M2e & HA11 | [ |
| Cymbidium ringspot virus (CymRSV) | Spherical | Myc | [ |
| Potato virus Y (PVY) | Filamentous | preS1 | [ |
| Bamboo mosaic virus (BaMV) | Filamentous | VP2 | [ |
| Turnip mosaic virus (TuMV) | Filamentous | VEGFR-3 | [ |
| Cardamom mosaic virus (CdMV) | Filamentous | gp41 | [ |
| Artichoke mottled crinkle virus (AMCV) | Spherical | 2 F5 | [ |
Fig. 1Schematical presentation of a CCMV virion and a coat protein subunit. a CCMV particle according to data from Protein Data Bank (PDB ID: 1ZA7 [http://www.rcsb.org/pdb/home/home.do]) [20] and as visualized by Chimera1.6.2 (http://www.cgl.ucsf.edu/chimera/) [60], showing an icosahedral asymmetric unit consisting of three identical subunits in the centre, b ribbon diagram of a coat protein subunit B displaying N-terminal end (residues 1-25 are not shown), four β-barrels (βB-βC, βD-βE, βF-βG and βH-βI) and C-terminal end as potential insertion sites. Insertions within the barrels are shown between the white dashes
Fig. 2Schematical diagram of CCMV-CP and NΔ24-CP constructs expressed in E. coli. Six His-tag residues introduced within the predicted loops (βB-βC-His, βD-βE-His, βF-βG-His and βH-βI-His) were cloned as SpeI-SstI, while for the N- and C-terminal end fusion of the CCMV-CP (His-CP, CP-His and His-CP-His) and NΔ24-CP (His-NΔ24-CP and His-HA-NΔ24-CP), the 6xHis-tags were introduced by PCR
Fig. 3Expression of His-tag insertion and terminal fusion CCMV constructs in E. coli. a Cell extracts (CE) and reassembled VLP pellets (RP) collected through sucrose cushion of CCMV-CP (A 1) and CCMP-CP derivatives containing a 6xHis-tag insertion within each of the loop structures (βB-βC-His [A 2], βD-βE-His[A 3], βF-βG-His[A 4] and βH-βI-His[A 5]), were resolved on 15 % SDS-PAGE and stained with Coomassie blue. b Western blots of 6xHis-tag fusion constructs (His-CP, CP-His, His-CP-His) detected by polyclonal anti-CCMV (B 1) and monoclonal anti-His (B 2) sera. CCMV-CP and NΔ24-CP were used as controls for size comparison with the chimeras. A molecular size marker is indicated on the left
Fig. 4Electron micrographs of negatively-stained CCMV-CP/ NΔ24-CP loop insertion and fusion constructs expressed in E. coli. (a) Reassembled VLP pellet of βF-βG-His (A1), βF-βG-M2e(7) (A2), βF-βG-M2e(15) (A3) and βH-βI-M2e(23) (A4). (b) CCMV virions purified from cowpea plants (B1), CCMV-CP VLPs (B2), immuno-gold labeled CCMV-CP (B3), His-CCMV (B4), CCMV-His (B5), His-CCMV-His (B6), NΔ24-CP (B7), His-NΔ24-CP (B8), M2e(23)NΔ24-CP (B9), His-HA-NΔ24-CP (B10), HA-NΔ24-CP (B11), VP1-CP (B12), 2C-CP (B13), VP1-NΔ24-CP (B14), 2C-NΔ24-CP (B15), CP-HA (B16), CP-M2e(23) (B17, B18).(c) Higher resolution of four selected CCMV particles including CCMV virion, CCMV-CP, NΔ24-CP and VP1-NΔ24-CP shown on the top-right of each electron micrograph. Magnification 20,000x, scale bar represents 200 nm
Fig. 5Schematic illustration of loop-inserted and coat protein fusion constructs expressed in E. coli. The ectodomain of M2e-protein of Influenza A virus: M2e(23), M2e(15) and M2e(7) introduced within the predicted loops (βB-βC-M2e(23), βD-βE-M2e(23), βF-βG-M2e(23)/M2e(15)/M2e(7) and βH-βI-(23)/M2e(15)/M2e(7) as adaptors via SpeI and SstI overhangs. Foot and mouth disease virus (VP1/2C) Influenza A virus epitopes [M2e(23) and HA] were fused by PCR to the N-terminus of the CCMV-CP (VP1/2C-CP) and NΔ24-CP (VP1/2C/M2e/HA-NΔ24-CP), and C-terminal to CCMV-CP (CP-HA, CP-M2e)
Fig. 6Expression of loop-inserted and terminal fusion CCMV constructs in E. coli. (a) SDS-PAGE analysis of cell extract (CE) and reassembled VLP pellet (RP) from the M2e(23) loop-inserted CCMV-CP (A1) βB-βC-M2e(23), (A2) βD-βE-M2e(23), (A3) βF-βG-M2e(23) and (A4) βH-βI-M2e(23). (b) SDS-PAGE analysis of M2e(7) and M2e(15) within βF-βG (B1,B3) and βH-βI(B2, B4) CCMV-CP loops. (c) SDS-PAGE (upper panel) and western blot (lower panel) of βF-βG M2e(7)/M2e(15) and βH-βI M2e(7)/M2e(15) detected by monoclonal anti-His-tag and M2e sera, respectively. (d) Immunoblot detection of VP1 and 2C fusions to CCMV-CP and NΔ24-CP using polyclonal anti-CCMV serum (D1) and serum from FMDV-infected guinea pig (D2). Induced empty pET-28a and CCMV-CP were used as negative and positive control, respectively. (e) Detection of M2e fused to NΔ24CP using polyclonal anti-CCMV (E1) and monoclonal anti-M2e (E2) sera. Molecular size marker is indicated on the left
Fig. 7Size measurement of chimeric CCMV-CP/ NΔ24-CP VLPs. The average size of VLPs from CCMV-CP, NΔ24-CP, M2e(23)NΔ24-CP, VP1-CP, VP1-NΔ24-CP, 2C-CP, 2C-NΔ24-CP, HA-NΔ24-CP, CP-HA and CP-M2e(23) are presented in comparison to the size of plant-purified CCMV virions
Fig. 8N-terminal charge of chimeric subunits from VLPs and detection of mRNAs. a N-terminal charges of CCMV-CP, NΔ24-CP, M2e(23)NΔ24-CP, VP1-CP, VP1-NΔ24-CP, 2C-CP, 2C-NΔ24-CP, HA-NΔ24-CP, CP-HA and CP-M2e(23) were calculated at pH 7.2 and 4.8 for ≥24 and ≥45 N- terminal residues using Protein Calculator version 3.3 (http://www.scripps.edu/~cdputnam/protcalc.html). b RT-PCR detection of mRNAs encoding CCMV coat proteins. ⊕Positive charge derived from NH2 group. (+) indicates the presence of RNA followed by PCR product cloning and sequence confirmation and (-) for its absence not being cloned and sequenced
Primer and adapter sequences used in this study
| Construct | Primer set 5ˊ → 3ˊ |
|---|---|
| CCMV-CP | GCGCCATGGGTACAGTCGGAACAGGGAAGTTAACTC (F) |
| GGAAGCTTCACTAATACACCGGAGTG (R) | |
| NΔ24CP | GGGCCATGGGGACTCGTGTGGTCCAAC (F) |
| GGAAGCTTCACTAATACACCGGAGTG (R) | |
| His-LBC | CGCACTAGTCATCACCATCACCATCACGAGCTCGCTGCCGAAGCTAAAGTAACCTCG (F) |
| CGCACTAGTCGCACAAGAGGCGGTCCAC (R) | |
| His-LDE | CGCACTAGTCATCACCATCACCATCACGAGCTCCCCAGTGTTAGTGGCACAGTGAAATC (F) |
| CGCACTAGTAAGCAACCCAAGCCATAATAAAACTCTACC (R) | |
| His-LFG | CGCACTAGTCATCACCATCACCATCACGAGCTCTCGAAAGATGTTGTCGCTGCTATGTAC (F) |
| CGCACTAGTGTTGTCGGCCACAGCTAATGCC (R) | |
| His-LHI | CGCACTAGTCATCACCATCACCATCACGAGCTCGCGGCTCTCACTGAGGGCGAC (F) |
| CGCACTAGTACTGCTGTACAAGTAGATCGTTAAATCCGC (R) | |
| M2e (7) loop adaptor | CTAGTCTGCTGACCGAAGTGGAGCT (F) |
| CCACTTCGGTCAGCAGA (R) | |
| M2e (15) loop adaptor | CTAGTCTGCTGACCGAAGTGGAAACCCCGACCCGCAACGGCTGGGAGCT (F) |
| CCCAGCCGTTGCGGGTCGGGGTTTCCACTTCGGTCAGCAGA (R) | |
| M2e (23) loop adaptor | CTAGTAGCCTGCTGACCGAAGTGGAAACCCCGACCCGCAACGGCTGGGAATGCCGCTGCAGCGAT |
| AGCAGCGATGAGCT (F) | |
| CATCGCTGCTATCGCTGCAGCGGCATTCCCAGCCGTTGCGGGTCGGGGTTTCCACTTCGGTCAGCA | |
| GGCTA (R) | |
| His-CP* | GGGCCATGGGTCACCACCACCACCACCACACAGTCGGAACAGGGAAGTTAAC (F) |
| CCCAAGCTTCACTAATACACCGGAGTGAAAGAGTCGTCAAACGTAGGTCTGAC (R) | |
| CP-His* | CGCCCATGGGTACAGTCGGAACAGGGAAGTTAACTCGTGCACAACGAAGGGC (F) |
| GGGAAGCTTCACTAGTGGTGGTGGTGGTGGTGATACACCGGAGTGAAAGAGTCGTC (R) | |
| His-CP-His* | GGGCCATGGGTCACCACCACCACCACCACACAGTCGGAACAGGGAAGTTAAC (F) |
| GGGAAGCTTCACTAGTGGTGGTGGTGGTGGTGATACACCGGAGTGAAAGAGTCGTC (R) | |
| His- NΔ24CP * | GGGCCATGGGTCACCACCACCACCACCACACTCGTGTGGTCCAACC (F) |
| CCCAAGCTTCACTAATACACCGGAGTGAAAGAGTCGTCAAACGTAGGTCTGAC (R) | |
| HA- NΔ24CP* | GGGCCATGGGGTGGACCATTCTGAAACCGAACGATGCGATTAACTTTGAAAGCAACCCCGGGACTCGTGTGGTCCAACCTG (F) |
| CCCAAGCTTCACTAATACACCGGAGTGAAAGAGTCGTCAAACGTAGGTCTGAC (R) | |
| His-HA- NΔ24CP* | GGGCCATGGGGCACCACCACCACCACCACTGGACCATTCTGAAACCGAAC (F) |
| CCCAAGCTTCACTAATACACCGGAGTGAAAGAGTCGTCAAACGTAGGTCTGAC (R) | |
| M2e(23) NΔ24CP* | CAACGGCTGGGAATGCCGCTGCAGCGATAGCAGCGATCCCGGGACTCGTGTGGTCCAACCTG (F1) |
| GGGCCATGGTCATGGTCAGCCTGCTGACCGAAGTGGAAACCCCGACCCGCAACGGCTGGGAATGCCGCTGC (F2) | |
| CCCAAGCTTCACTAATACACCGGAGTGAAAGAGTCGTCAAACGTAGGTCTGAC (R) | |
| CP-HA* | CGCCCATGGGTACAGTCGGAACAGGGAAGTTAACTCGTGCACAACGAAGGGC (F) |
| CGTTCGGTTTCAGAATGGTCCAATACACCGGAGTGAAAGAGTCG (R1) | |
| CCCAAGCTTCACTAGTTGCTTTCAAAGTTAATCGCATCGTTCGGTTTCAGAATGG (R2) | |
| CP-M2e(23)* | CGCCCATGGGTACAGTCGGAACAGGGAAGTTAACTCGTGCACAACGAAGGGC (F) |
| CCCAGCCGTTGCGGGTCGGGGTTTCCACTTCGGTCAGCAGGCTATACACCGGAGTGAAAGAG (R1) | |
| CCCAAGCTTCACTAATCGCTGCTATCGCTGCAGCGGCATTCCCAGCCGTTGCGGGTCGGG (R2) | |
| VP1-CP/ VP1 NΔ24CP Adaptor | CATGGTACGGTGACACCAGCACTAACAACGTGAGAGGTGACCTTCAAGTGTTAGCTCAGAAGGCAGAAAGAACTCTGCCTGGGTCGA (F) |
| CTAGTCGACCCAGGCAGAGTTCTTTCTGCCCTCTGAGCTAACACTTGAAGGTCACCTCTCACGTTGTTAGTGCTGGTGTCACCGTAC (R) | |
| 2C-CP/2C NΔ24CP adaptor | CATGGGAATGGCTGGACAACGCGCGTCAAGCGGGGTCGACGCGTGGGA (F) |
| 26GNVΔ24CP* | GATACCGGCGAAGTGATTCTGAACAGCTATCGCATTAACCATTATCGCACTCGTGTGGTCCAACC (F1) |
| CGCCCATGGGGAGAGTTGAATGCGAAATTGCGCTGAACAAAGATACCGGCGAAGTG (F2) | |
| CCCAAGCTTCACTAATACACCGGAGTGAAAGAGTCGTCAAACGTAGGTCTGAC (R) | |
| 31GCVΔ24CP* | GAAGAATGGGGCTGCCTGGCGATTAACGATGGCTGCCTGTATGGCAGCTGCCAGGATATTACTCGTGTGGTCCAACC (F1) |
| CGCCCATGGGGTTTAGCAAAGAACGCAGCAGCAACTGGGGCTGCGAAGAATGGGGCTGC (F2) | |
| CCCAAGCTTCACTAATACACCGGAGTGAAAGAGTCGTCAAACGTAGGTCTGAC (R) | |
| Δ24CP15GN* | GGGCCATGGGGACTCGTGTGGTCCAAC (F) |
| CTTTCACGCAGCATTCGCTCACATACACCGGAGTG (R1) | |
| GGGAAGCTTCTAGCTTTTAATAATGCTAATATCATCTTTCACGCAGC (R2) | |
| Δ24CP16GC* | GGGCCATGGGGACTCGTGTGGTCCAAC (F) |
| CATTCTTCGCAGCCCCAGTTGCTGCTATACACCGGAGTG (R1) | |
| GGGAAGCTTCTAATCGTTAATCGCCAGGCAGCCCCATTCTTCGCAG (R2) |
Restriction enzymes (BamHI, HindIII, NcoI, PstI, SpeI and SstI) and adaptor overhangs are shown in underlined letters.* Epitopes were PCR-fused to the CPs by two rounds of PCR
Fig. 9Schematic view and electron micrographs of Schmallenberg virus (SBV) Gn, Gc CCMV-based chimeras. a Location and sequence of CCMV constructs harboring SBV glycoprotein peptides fused to N- and C-termini including N-terminal single fusions (a1–a4) and dual terminal fusions (a5, a6). b Electron micrographs of chimeric CCMV VLPs co-expressing SBV epitopes as depicted in panel a (b1–b6)