| Literature DB >> 29045605 |
Michael Marks1,2, Maria Fookes3, Josef Wagner3, Robert Butcher1, Rosanna Ghinai1, Oliver Sokana4, Yaw-Adu Sarkodie5, Sheila A Lukehart6, Anthony W Solomon1,2, David C W Mabey1,2, Nicholas Thomson3,7.
Abstract
Background: Yaws-like chronic ulcers can be caused by Treponema pallidum subspecies pertenue, Haemophilus ducreyi, or other, still-undefined bacteria. To permit accurate evaluation of yaws elimination efforts, programmatic use of molecular diagnostics is required. The accuracy and sensitivity of current tools remain unclear because our understanding of T. pallidum diversity is limited by the low number of sequenced genomes.Entities:
Mesh:
Year: 2018 PMID: 29045605 PMCID: PMC5848336 DOI: 10.1093/cid/cix892
Source DB: PubMed Journal: Clin Infect Dis ISSN: 1058-4838 Impact factor: 9.079
Figure 1.Study flowchart. Samples were originally collected in 2 studies conducted in Ghana and the Solomon Islands. The results of Treponema pallidum particle agglutination assays conducted in the original studies and of the tp47 polymerase chain reaction assay performed in this study are shown. Abbreviations: PCR, polymerase chain reaction; TPPA, Treponema pallidum particle agglutination.
Figure 2.Phylogenetic tree of Treponema pallidum subspecies pertenue genomes. Phylogenetic tree of T. pallidum subsp pertenue sequences estimated by mapping to the T. pallidum subsp. pertenue SamoaD reference genome. Recombination blocks shared by 1 or more isolates are numbered and those unique to a single isolate are unnumbered. Vertical bars over the genome length (gray block) mark the location of the tpr genes. Coordinates are in base pairs with respect to the reference gnome. Recombination blocks present in the Solomon Islands T. pallidum subsp pertenue isolates are numbered (1–3; main frame). Recombination block 2 spans several genes (top right), including Tp_0858, which contains the primer-binding sites used in the 2015 Centers for Disease Control and Prevention (CDC) real-time polymerase chain reaction (PCR) assay. The positions of single-nucleotide polymorphisms identified in region 2 are shown for each isolate (top right) compared to the reference genome. Top left shows an alignment of the region of the reference genomes amplified by the 2015 CDC real-time PCR assay for T. pallidum subsp pertenue isolates compared to the same region in samples from the Solomon Islands. Primer binding sites are indicated by arrows. Several mutations within these sites are found in Solomon Islands samples. Abbreviations: CDC, Centers for Disease Control and Prevention; FP, forward primer; PCR, polymerase chain reaction; RP, reverse primer; SI, Solomon Islands; TPP, Treponema pallidum subsp pertenue.
Figure 3.Gel and quantitative polymerase chain reaction (PCR) assays utilizing both existing and new PCR primers. A, Gel picture showing PCR products for the genomic DNA (gDNA) of a Solomon Islands (SI) sample WP0022.7liq, and a non-SI sample, Treponema pallidum subsp pertenue Gauthier, with the use of the generic forward and reverse primers as indicated. The reverse primer of the Centers for Disease Control and Prevention (CDC) 2015 real-time (RT) PCR assay is labeled reverse primer in Figure 2 . Forward primer (2015 CDC RT-PCR): 5ʹ-CGGCCACCAACTTGGGATTGAC-3ʹ. Reverse primer (2015 CDC RT-PCR): 5ʹ-CGTACACCGAACCTTTGTCTT-3ʹ. Reverse primer (modified PCR-1): 5ʹ- GTGCGGTGAGCCCGGCGTT-3ʹ. Reverse primer (modified PCR-2): 5ʹ-GTGAGCCCGGCGTT-3ʹ. B, Quantitative PCR amplification curves of new PCR products obtained for the gDNA of the non-SI sample, an SI sample, and both samples (all as in A) combined by using specific reverse primers. Forward primer (2015 CDC RT-PCR): 5ʹ-CGGCCACCAACTTGGGATTGAC-3ʹ. Probe: 5ʹ-FAM-GCTGCAAGGAGAAGTCCTGCTGC-TAMRA-3ʹ. Reverse primer (2015 CDC real-time PCR): 5ʹ-CGTACACCGAACCTTTGTCTT-3ʹ. Reverse primer (modified PCR-2): 5ʹ-GTGAGCCCGGCGTT-3ʹ. Abbreviations: ∆Rn, normalized reporter signal; CDC, Centers for Disease Control and Prevention; DDW, double distilled water; RT-PCR, real-time polymerase chain reaction; SI, Solomon Islands.