| Literature DB >> 28098528 |
James R Otieno, Everlyn M Kamau, Charles N Agoti, Clement Lewa, Grieven Otieno, Ann Bett, Mwanajuma Ngama, Patricia A Cane, D James Nokes.
Abstract
In February 2012, the novel respiratory syncytial virus (RSV) group A, genotype ON1, was detected in Kilifi County, coastal Kenya. ON1 is characterized by a 72-nt duplication within the highly variable G gene (encoding the immunogenic attachment surface protein). Cases were diagnosed through surveillance of pneumonia in children at the county hospital. Analysis of epidemiologic, clinical, and sequence data of RSV-A viruses detected over 5 RSV seasons (2010/2011 to 2014/2015) indicated the following: 1) replacement of previously circulating genotype GA2 ON1, 2) an abrupt expansion in the number of ON1 variants detected in the 2014/2015 epidemic, 3) recently accumulation of amino acid substitutions within the ON1 duplicated sequence, and 4) no clear evidence of altered pathogenicity relative to GA2. The study demonstrates the public health importance of molecular surveillance in defining the spread, clinical effects, and evolution of novel respiratory virus variants.Entities:
Keywords: G protein; RSV; evolutionary dynamics; genetic diversity; phylogenetic analysis; respiratory diseases; respiratory infections; respiratory syncytial virus; viruses
Mesh:
Substances:
Year: 2017 PMID: 28098528 PMCID: PMC5324789 DOI: 10.3201/eid2302.161149
Source DB: PubMed Journal: Emerg Infect Dis ISSN: 1080-6040 Impact factor: 6.883
Demographic and clinical characteristics of cases of pneumonia caused by respiratory syncytial virus A genotypes ON1 and GA2 in children admitted to Kilifi County Hospital, September 2010–August 2015*
| Characteristic | Genotype, no. (%) | ||
|---|---|---|---|
| ON1 | GA2 | Total | |
| Age, y | |||
| <1 | 223 (85.4) | 158 (87.3) | 381 (86.2) |
| >1 | 38 (14.6) | 23 (12.7) | 61 (13.8) |
| Sex | |||
| F | 118 (45.2) | 70 (38.6) | 188 (42.5) |
| M | 143 (54.8) | 111 (61.3) | 254 (57.5) |
| Cough | |||
| No | 5 (1.9) | 4 (2.2) | 9 (2.0) |
| Yes | 256 (98.1) | 177 (97.8) | 433 (98.0) |
| Breathing difficulty | |||
| No | 15 (5.8) | 3 (1.7) | 18 (4.1) |
| Yes | 246 (94.3) | 178 (98.3) | 423 (95.9) |
| Chest wall indrawing | |||
| No | 6 (2.3) | 6 (3.3) | 12 (2.7) |
| Yes | 255 (97.7) | 175 (96.7) | 430 (97.3) |
| Inability to feed | |||
| No | 211 (81.2) | 165 (91.2) | 376 (85.3) |
| Yes | 49 (18.9) | 16 (8.8) | 65 (14.7) |
| Oxygen saturation, % | |||
| >90 | 214 (82.0) | 144 (79.6) | 358 (81.0) |
| <90 | 47 (18.0) | 37 (20.4) | 84 (19.0) |
| Prostration/unconsciousness | |||
| No | 240 (92.0) | 172 (95) | 412 (93.2) |
| Yes | 21 (8.0) | 9 (5.0) | 30 (6.8) |
| Pneumonia status | |||
| Severe† | 203 (77.8) | 137 (75.7) | 340 (76.9) |
| Very severe‡ | 58 (22.2) | 44 (24.3) | 102 (23.1) |
| Hospital stay, d | |||
| 1–4 | 160 (62.0) | 101 (55.8) | 261 (59.4) |
| >4 | 98 (38.0) | 80 (44.2) | 178 (40.5) |
| Outcome | |||
| Survived | 250 (96.9) | 177 (97.8) | 427 (97.3) |
| Died | 8 (3.1) | 4 (2.2) | 12 (2.7) |
*The denominator was 442 samples but for some of the features it ranged from 439 to 442 †[Cough or difficulty in breathing] and chest wall indrawing ‡[Cough or difficulty in breathing] and hypoxic or prostrate/unconscious.
Figure 1Circulating patterns of respiratory syncytial virus (RSV) in Kilifi, Kenya, September 2010– August 2015. A) Total RSV-positive cases (gray continuous line) and typed RSV-A samples (dotted orange line) by month. B) The proportion of RSV-A genotypes ON1 (black) and GA2 (green) per epidemic season. An RSV epidemic season is designated to start in September of 1 year until August of the following year. Unusually, for the last 3 seasons, group A represents most of all RSV cases
Clinical severity comparison between cases of pneumonia caused by respiratory syncytial virus A genotypes ON1 and GA2 in children admitted to Kilifi County Hospital, September 2010–August 2015*
| Characteristic | Unadjusted odds ratio (95% CI) | p value |
|---|---|---|
| Age <1 y | 0.85 (0.49–1.49) | 0.579 |
| Male sex | 0.76 (0.52–1.12) | 0.172 |
| Clinical features | ||
| Cough | 1.16 (0.31–4.37) | 0.830 |
| Breathing difficulty | 0.28 (0.08–0.97) | 0.045 |
| Chest wall indrawing | 1.46 (0.46–4.59) | 0.520 |
| Inability to feed | 2.40 (1.31–4.36) | 0.004 |
| Oxygen saturation <90% | 0.86 (0.53–1.38) | 0.521 |
| Prostration/unconsciousness | 1.67 (0.75–3.74) | 0.211 |
| Pneumonia status, very severe | 0.89 (0.57–1.39) | 0.609 |
| Hospital stay, >4 d | 0.77 (0.53–1.14) | 0.192 |
| Outcome, died | 1.416 (0.42–4.78) | 0.575 |
*The denominator was 442 samples but for some of the features it ranged from 439 to 442.
Figure 2Maximum-likelihood phylogenetic tree of unique respiratory syncytial virus (RSV) genotype ON1 G gene ectodomain sequences from Kilifi, Kenya, 2012–2015. The taxa are color coded by the epidemic season of detection (key), and the names represent KEN/Kilifi/serialnodate of collection. Note that although the study detected RSV ON1 in the epidemic season 2011/2012, the first ON1 cases were in 2012. Scale bar indicate nucleotide substitutions per site.
Temporal occurrence of respiratory syncytial virus A (RSV-A) variants (rows) detected in Kilifi, Kenya, 2010/2011–2014/2015
| Variant* | Genotype | Epidemic (no. variants/epidemic) | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| 2010/2011 | 2011/2012 | 2012/2013 | 2013/2014 | 2014/2015 | ||||||
| 17 | 15 | 13 | 12 | 29 | ||||||
| 1 | ON1 | |||||||||
| 2 | ON1 | |||||||||
| 3 | ON1 | |||||||||
| 4 | ON1 | |||||||||
| 5 | ON1 | |||||||||
| 6 | ON1 | |||||||||
| 7 | ON1 | |||||||||
| 8 | ON1 | |||||||||
| 9 | ON1 | |||||||||
| 10 | ON1 | |||||||||
| 11 | ON1 | |||||||||
| 12 | ON1 | |||||||||
| 13 | ON1 | |||||||||
| 14 | ON1 | |||||||||
| 15 | ON1 | |||||||||
| 16 | ON1 | |||||||||
| 17 | ON1 | |||||||||
| 18 | ON1 | |||||||||
| 19 | ON1 | |||||||||
| 20 | ON1 | |||||||||
| 21 | ON1 | |||||||||
| 22 | ON1 | |||||||||
| 23 | ON1 | |||||||||
| 24 | ON1 | |||||||||
| 25 | ON1 | |||||||||
| 26 | ON1 | |||||||||
| 27 | ON1 | |||||||||
| 28 | ON1 | |||||||||
| 29 | ON1 | |||||||||
| 30 | ON1 | |||||||||
| 31 | ON1 | |||||||||
| 32 | ON1 | |||||||||
| 33 | ON1 | |||||||||
| 34 | ON1 | |||||||||
| 35 | GA2 | |||||||||
| 36 | GA2 | |||||||||
| 37 | GA2 | |||||||||
| 38 | GA2 | |||||||||
| 39 | GA2 | |||||||||
| 40 | GA2 | |||||||||
| 41 | GA2 | |||||||||
| 42 | GA2 | |||||||||
| 43 | GA2 | |||||||||
| 44 | GA2 | |||||||||
| 45 | GA2 | |||||||||
| 46 | GA2 | |||||||||
| 47 | GA2 | |||||||||
| 48 | GA2 | |||||||||
| 49 | GA2 | |||||||||
| 50 | GA2 | |||||||||
| 51 | GA2 | |||||||||
| 52 | GA2 | |||||||||
| 53 | GA2 | |||||||||
| 54 | GA2 | |||||||||
| 55 | GA2 | |||||||||
| 56 | GA2 | |||||||||
| 57 | GA2 | |||||||||
| 58 | GA2 | |||||||||
| 59 | GA2 | |||||||||
| 60 | GA2 | |||||||||
| 61 | GA2 | |||||||||
| 62 | GA2 | |||||||||
| 63 | GA2 | |||||||||
| 64 | GA2 | |||||||||
| 65 | GA2 | |||||||||
| 66 | GA2 | |||||||||
*A variant was defined as a group of viruses (when group includes a singleton) within a genotype that possesses ≥4 nt differences in the G ectodomain region than other viruses (see Methods). Dark blue, GA2; green, ON1.
Figure 3Amino acid substitutions in respiratory syncytial virus A (RSV-A) G protein for sequences isolated in Kilifi Kenya from season 2011/2012 to 2014/2015. All unique protein sequences per epidemic were collated, aligned and the amino acid differences from the earliest sequence determined and marked with vertical colored bars, with the substituted amino acid residue color coded as shown by the key between panels A and B. A) Full aligned aa sequence inferred from the G gene sequences (ON1 and GA2); B) (ON1 only) focuses on the region of the ON1 duplication. The positions shown at the bottom of panels A and B are relative to the first amino acid of the regions analyzed, i.e., from amino acid positions 94 and 260, respectively, of the reference strain A2 (Ref: M74568). Indicated at the top of these panels are the functional domains of the G protein (panel A) and the 72-nt duplication of genotype ON1 (panel B; duplicated sequence I in “orange” and duplicated sequence II in “purple”). Below this, the histogram indicates the total number of changes at each position. C) Concurrent aa positions within the duplicated sequences I and II, and the respective aa substitutions (numbering similar to positions in panel B).