| Literature DB >> 21209900 |
Sarah Keasey1, Christine Pugh, Alexander Tikhonov, Gengxin Chen, Barry Schweitzer, Aysegul Nalca, Robert G Ulrich.
Abstract
Monkeypox is a zoonotic viral disease that occurs primarily in Central and West Africa. A recent outbreak in the United States heightened public health concerns for susceptible human populations. Vaccinating with vaccinia virus to prevent smallpox is also effective for monkeypox due to a high degree of sequence conservation. Yet, the identity of antigens within the monkeypox virus proteome contributing to immune responses has not been described in detail. We compared antibody responses to monkeypox virus infection and human smallpox vaccination by using a protein microarray covering 92-95% (166-192 proteins) of representative proteomes from monkeypox viral clades of Central and West Africa, including 92% coverage (250 proteins) of the vaccinia virus proteome as a reference orthopox vaccine. All viral gene clones were verified by sequencing and purified recombinant proteins were used to construct the microarray. Serum IgG of cynomolgus macaques that recovered from monkeypox recognized at least 23 separate proteins within the orthopox proteome, while only 14 of these proteins were recognized by IgG from vaccinated humans. There were 12 of 14 antigens detected by sera of human vaccinees that were also recognized by IgG from convalescent macaques. The greatest level of IgG binding for macaques occurred with the structural proteins F13L and A33R, and the membrane scaffold protein D13L. Significant IgM responses directed towards A44R, F13L and A33R of monkeypox virus were detected before onset of clinical symptoms in macaques. Thus, antibodies from vaccination recognized a small number of proteins shared with pathogenic virus strains, while recovery from infection also involved humoral responses to antigens uniquely recognized within the monkeypox virus proteome.Entities:
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Year: 2010 PMID: 21209900 PMCID: PMC3012712 DOI: 10.1371/journal.pone.0015547
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Orthopoxvirus microarray proteome coverage.*
| Strain | GenBank Accession # | Proteins | ||||
| Total encoded within genome | Identical to VACCOP | Identical to ZAIRE | Identical to WRAIR | Printed (% coverage) | ||
| VACCOP | M35027 | 273 | - | 4 | 4 | 250 (92) |
| ZAIRE | DQ011155 | 202 | 4 | - | 62 | 192 (95) |
| WRAIR | AY603973 | 178 | 4 | 62 | - | 166 (93) |
*Protein numbers and identity based on the poxvirus database annotations ( www.poxvirus.org ).
Orthopoxvirus proteome recognized by IgM during acute infection.
| Vaccinia ortholog | Predicted function |
| ||
| VACCOP |
| WRAIR | ||
| F13L | EEV phospholipase, envelope protein | 14 | 16 | 16 |
| A44R | unknown | 5 | 19 | 11 |
| A33R | EEV envelope protein | 7 | 11 | 11 |
| A46R | Toll-IL1-receptor-like protein | 5 | 10 | 10 |
| C23L | chemokine binding protein | 7 | 9 | 8 |
| A48R | thymidylate kinase | 5 | 9 | 7 |
| B5R | EEV envelope protein | 7 | 6 | 6 |
| J1R | virion protein required for morphogenesis | 9 | 6 | 3 |
| E11L | core protein | 7 | 5 | 5 |
| A4L | core protein | 5 | 5 | 6 |
| B15R | unknown | 7 | 4 | 5 |
| E3L | dsRNA binding protein | 7 | 6 | 2 |
| WR_146 | A-type inclusion protein, fragment | NA | 5 | NP |
| H3L | IMV envelope protein | 4 | 5 | 5 |
| K7R | unknown | NP | 3 | 5 |
| B11R | unknown | 5 | 2 | 5 |
| F12L | IEV surface protein | 2 | 5 | NP |
| C16L | unknown | 3 | 2 | 5 |
| A26L | IMV envelope protein | 1 | 3 | 5 |
Proteins exhibiting more than a fivefold average signal increase. Average signals from sera collected at day 6 normalized to average signal at day -1.
NA, not present in genome,
NP, not present on array.
100% identity between WRAIR and ZAIRE proteins.
Figure 1Acute phase IgM binding to ZAIRE proteins.
Interactions of arrayed orthopox virus proteins with antibody from serum collected from four macaques (1–4) before (−1) and 6 days after infection with monkeypox virus. Data are presented as mean fluorescent intensity signal (mean RFUs of 2–4 protein spots). SD<15%.
Orthopoxvirus proteome recognized by IgG in convalescent serum.
| Vaccinia ortholog | Predicted function |
| ||
| VACCOP |
| WRAIR | ||
| F13L | EEV envelope protein | 387 | 448 | 448 |
| D13L | IV membrane scaffold protein | 294 | 207 | 72 |
| A33R | EEV envelope protein | 56 | 211 | 211 |
| WR_148 | A-type inclusion protein, fragment | NA | 119 | NP |
| D8L | IMV envelope protein | 116 | 161 | 47 |
| A4L | core protein | 113 | 99 | 88 |
| A27L | IMV envelope protein | 36 | 111 | 149 |
| H3L | IMV envelope protein | 130 | 66 | 93 |
| I1L | core protein | 81 | 91 | 91 |
| H5R | transcription factor | 80 | 101 | 70 |
| A10L | core protein | 124 | 86 | 30 |
| E3L | dsRNA binding protein | 9 | 101 | 37 |
| A26L | IMV envelope protein | 6 | 86 | 2 |
| C13L/C14L | unknown | 2/4 | 62 | 18 |
| B5R | EEV envelope protein | 46 | 33 | 33 |
| B13R/B14R | serine proteinase inhibitor | 3/4 | 10 | 49 |
| B19R | IFN-alpha/beta receptor | 8 | 37 | 15 |
| A46R | Toll-IL1-receptor [TIR]-like protein | 4 | 28 | 35 |
| B2R/B3R | Schlafen | 4/2 | 21 | 10 |
| C23L | chemokine binding protein | 17 | 11 | 10 |
| L4R | core protein | 14 | 10 | 10 |
| B1R | Ser/Thr kinase | 20 | 1 | 1 |
| F17R | core protein | 6 | 5 | 5 |
Average signals from sera collected at day 28 normalized to average signal at day -1.
100% identity between WRAIR and ZAIRE proteins.
NA, not present in genome.
NP, not present on array.
VACCOP proteins orthologous to fragments of a monkeypox protein.
Figure 2IgG responses to ZAIRE IMV envelope proteins contribute to virus neutralization.
(A) Antibody binding at days -1 and 28 relative to viral challenge in four macaques (1–4). Mean RFUs of 2–4 protein spots (SD<15%). (B) Correlation between IgG binding to IMV and serum neutralizing activity. Total antibody binding level to the IMV surface was estimated as the sum of fluorescent intensities for A26L, A27L, D8L, and H3L and analyzed for association with PRNT80 using linear regression.
Monkeypox virus proteome recognized by IgG from vaccinated humans.
| Vaccinia ortholog | Predicted function |
| |
|
| |||
| ZAIRE | WRAIR | ||
| F13L | EEV envelope protein | 59 | 59 |
| H3L | IMV envelope protein | 23 | 19 |
| I1L | DNA binding core protein | 55 | 55 |
| D13L | IV membrane scaffold protein | 28 | 6 |
| A10L | core protein | 24 | 17 |
| A33R | EEV envelope protein | 17 | 17 |
| A26L | IMV envelope protein | 20 | 1 |
| WR_148 | A-type inclusion protein, fragment | 12 | NP |
| A4L | core protein | 9 | 11 |
| B5R | EEV envelope protein | 4 | 4 |
| D8L | IMV envelope protein | 4 | 3 |
| B2R/B3R | Schlafen | 5 | 1 |
| D11L | nucleoside triphosphate phosphohydrolase | 2 | 2 |
| I4L | ribonucleoside reductase | 2 | 2 |
Average signals in sera of vaccinated normalized to signals in normal sera.
100% identity between WRAIR and ZAIRE proteins.
NA, not present in genome.
NP, not present on array.
VACCOP proteins orthologous to fragments of a monkeypox protein.
Antibody (IgG) responses of convalescent macaque and vaccinated human compared to relative abundance of viral protein.
| Orthopoxvirus | Predicted Function | Known ZAIRE | abundance VACCOP |
|
| core protein |
|
|
|
| core protein |
|
|
|
| IMV envelope protein |
|
|
|
| IMV envelope protein |
| |
| A33R | EEV envelope protein |
|
|
| A46R | Toll-IL1-receptor-like protein |
| |
| B1R | ser/thr kinase |
| |
| B2R/B3R | Schlafen |
|
|
| B5R | EEV envelope protein |
|
|
| B13R/B14R | serine proteinase inhibitor |
| |
| B19R | IFN-alpha/beta receptor |
| |
| C13L/C14L | unknown |
| |
| C23L | chemokine binding protein |
| |
|
| IMV envelope protein |
|
|
|
| nucleoside triphosphate phosphohydrolase |
| |
| D13L | IV membrane scaffold protein |
|
|
| E3L | dsRNSA binding protein |
| |
| F13L | EEV phospholipase, envelope protein |
|
|
|
| core protein |
| |
|
| IMV envelope protein |
|
|
| H5R | transcription factor |
| |
| I1L | core protein |
|
|
| I4L | ribonucleoside reductase |
| |
|
| core protein |
| |
| WR_148 | A-type inclusion protein, fragment |
|
|
Bolded orthopox proteins: identified by mass spectometry as one of 15 most abundant proteins, based on mole percent [17].
Antibody-binding protein, no abundance data available (−). Antibody-binding protein previously measured [17]–[20] by mass spectrometry (+).
Vaccinia virus protein similar to protein of monkeypox virus.
Figure 3Relationship between antibody responses and abundance of IMV proteins.
Relative levels of antibody binding were plotted against the most abundant proteins of vaccinia IMV [refs 17–20], using convalescent macaque and vaccinated human sera.
Protein A44R of monkeypox and vaccinia viruses.
| Virus | Amino acid sequence |
| VACWR |
|
| VACCOP |
|
| ZAIRE |
|
| WRAIR |
|