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Nunley, B. E.

Publications and source records attributed to Nunley, B. E..

4 recordsLinked to original sources

Lineage-specific tprK diversification and Treponema pallidum transmission dynamics in Buenos Aires, Argentina

BackgroundSyphilis rates are rising globally, with increases in congenital syphilis in South America particularly concerning. The characterization of contemporary South American Treponema pallidum (Tp) strains is crucial to syphilis vaccine development, yet few genomic epidemiology studies have focused on this region. Here, we performed whole genome sequencing (WGS) of Tp from Buenos Aires, Argentina, as well as deep sequencing of the hypervariable tprK locus, which is critical to Tp immune evasion. MethodsPeople with primary, secondary, or congenital syphilis were enrolled at two clinics in Buenos Aires between October 2018 and January 2023, including individuals associated with intra-household transmission. Hybrid capture WGS was performed and a core genome phylogeny generated. K-mer-based methods using full-length tprK PacBio long reads were used to uncover differences in diversity and detect Tp transmission. FindingsTp genomes were recovered from 70 individuals in Buenos Aires and primarily belonged to globally dominant SS14 sublineage-1 and Nichols sublineage-8, as did Tp from Brazil (n=8). Peruvian samples (n=3) all belonged to sublineage-1. Two individuals from Argentina had co-infections with Nichols- and SS14-lineage strains. Macrolide resistance via A2058G occurred in 27/70 (38.6%) samples. Across 56 samples, tprK allelic diversity was significantly increased in secondary syphilis, oral lesions, and SS14-lineage strains compared to primary syphilis, anogenital lesions, and Nichols-lineage strains, respectively. Increased diversity in SS14-lineage strains is driven by an enhanced repertoire of V7-specific donor sequences. tprK sequences from intra-household transmissions were more similar than unrelated samples with identical core genomes. InterpretationTp circulating in South America is closely related to dominant global sublineages. Increased tprK diversity in the SS14 lineage may influence Tps ability to escape host immunity. tprK profiling is a promising tool to elucidate syphilis transmission networks. This study underscores the utility of genomics to yield insights into Tp pathogenesis. Research in contextO_ST_ABSEvidence before this studyC_ST_ABSAlthough whole genome sequencing (WGS) and genomic epidemiology have contributed to an understanding of the global diversity of Treponema pallidum (Tp), very few strains from South America have been sequenced to date. On January 6th, 2026, we performed a PubMed search including terms "syphilis genomic epidemiology", "South America", "Treponema pallidum", and "Argentina". We excluded studies of ancient Tp samples found in South American archeological sites. A single Tp sample from Argentina was originally sequenced in 2016 and included in subsequent analyses of global diversity. Nine Peruvian samples were previously sequenced in a study of global diversity on six continents. Thirty-three samples from Cali, Colombia were predominantly SS14-lineage and genotypic macrolide resistance was found in half of strains. Additionally, studies of Tp in Buenos Aires using a multi-locus sequence typing approach have shown circulation of strains belonging to both Nichols and SS14 lineages, with an increasing rate of macrolide resistance over time. Five previous studies have examined tprK in clinical specimens and consistently shown increased tprK diversity in specimens associated with secondary syphilis compared to primary syphilis lesions. One study has shown that loss of tprK donor cassettes is associated with reduced tprK diversity, consistent with results from in vitro experiments. A single study has shown that tprK sequence content is more similar in samples with a suspected epidemiologic link, though no prior studies have looked at tprK diversity in the context of known syphilis transmission events. Added value of this studyThis study is the first to use WGS to comprehensively examine Tp transmission in a large South American city, yielding 96 samples from 70 individuals. We also add the first contemporary Tp genomes from Brazil. In contrast to findings from England, Australia, and other high-income countries, no Tp sublineages are associated with demographic groups or sexual networks in Buenos Aires. Two of seventy patients were co-infected with both Nichols- and SS14-lineage strains, showing the previously unappreciated frequency of conditions that permit inter-strain recombination-driven diversification of Tp. This study also reveals novel aspects of Tp pathogenesis, including lineage-specific differences in tprK diversity. We also develop methods for the analysis of tprK relatedness between samples and demonstrate that tprK sequences are more similar in samples from individuals within intra-household syphilis transmission chains compared to those from epidemiologically unrelated individuals. Implications of all the available evidenceTp strains circulating in Buenos Aires are genetically similar to those circulating worldwide and in Brazil and Peru but are noteworthy for the low (but rising) rate of macrolide resistance. Lineage-specific patterns of tprK antigenic variation could result in differences between Nichols- and SS14-lineage strains interactions with the host immune system. Finally, we show that tprK profiling holds promise to identify samples from within a syphilis transmission chain and could play an important role in public health.

microbiology↗

Clinical performance evaluation of a tiling amplicon panel for whole genome sequencing of respiratory syncytial virus

Accurate genomic characterization of respiratory syncytial virus (RSV) is crucial for studies of epidemiology and viral evolution, and monitoring potential escape from newly authorized vaccines and antivirals. We adapted a viral whole genome tiling amplicon panel (UW-ARTIC) and developed a custom bioinformatic pipeline for high-throughput, cost-effective sequencing of RSV-A and RSV-B. We established genome acceptability criteria and determined the performance characteristics of the panel including assay sensitivity, specificity, breadth of genome recovery, accuracy, and precision using contrived and remnant clinical specimens. High-quality genomes (>95% genome completeness; >500X and >1000X average depth for whole genome and fusion gene respectively) were recovered from samples with Ct [≤] 30 ([~]594 and 2,004 copies per reaction for RSV-A and RSV-B respectively). Minor variants were accurately identified in sample mixtures of 5:95 and higher. The assay showed high accuracy when compared against Sanger, shotgun metagenomic, and hybridization capture-based sequencing; and high repeatability and reproducibility. The UW-ARTIC RSV panel has utility in genomic surveillance, clinical and research applications. It has been used to generate FDA-reportable data for clinical trials of RSV antiviral products, with robust performance characteristics in samples from around the globe from as recently as the 2023/24 season. Continued genomic surveillance and future updates to primer sets will be essential for continued recovery of genomes as RSV continues to evolve.

genomics↗

Minimization of gene editing off-target effects by tissue restriction of expression

Therapeutic in vivo gene editing with highly specific nucleases has the potential to revolutionize treatment for a wide range of human diseases, including genetic disorders and latent viral infections like herpes simplex virus (HSV). However, challenges regarding specificity, efficiency, delivery, and safety must be addressed before its clinical application. A key concern is the risk of off-target effects, which can cause unintended and potentially harmful genetic changes. We previously developed a curative in vivo gene editing approach to eliminate latent HSV using HSV-specific meganuclease delivered by an AAV vector. In this study, we investigate off-target effects of meganuclease by identifying potential off-target sites through GUIDE-tag analysis and assessing genetic alterations using amplicon deep sequencing in tissues from meganuclease treated mice. Our results show that meganuclease expression driven by a ubiquitous promoter leads to high off-target gene editing in the mouse liver, a non-relevant target tissue. However, restricting the meganuclease expression with a neuron-specific promoter and/or a liver-specific miRNA target sequence efficiently reduces off-target effects in both liver and trigeminal ganglia. These findings suggest that incorporation of regulatory DNA elements for tissue-specific expression in viral vectors can reduce off-target effects and improve the safety of therapeutic in vivo gene editing.

molecular biology↗

ARTIC RSV amplicon sequencing reveals global RSV genotype dynamics.

Respiratory syncytial virus (RSV) is a leading cause of lower respiratory tract infections (LTRIs) in young children and adults over 65, contributing significantly to global healthcare burdens. With the recent approval of multiple pharmacological interventions for RSV, there is an increased demand for efficient, high-throughput sequencing methods to monitor RSV genetic diversity and any potential impact these interventions may have. Here we introduce two novel amplicon-based sequencing schemes designed for RSV A and B, optimised for integration with widespread existing ARTIC sequencing workflows. We demonstrate that these primer schemes can produce high quality genomes from RSV samples across the globe, with eight laboratories in five countries generating complete genomes on both Nanopore and Illumina sequencing platforms. The ability to effectively multiplex these RSV A and B primer schemes, enables streamlined, high-throughput sequencing without prior subtyping. Furthermore, these results provide a snapshot of the circulating diversity of RSV. Phylogenetic analysis of the 882 samples sequenced for this study suggests only minimal geographic clustering of RSV sequences, underscoring the global nature of RSV spread. It also highlights the distinct lineage dynamics seen between RSV A and B. This study represents an advancement in RSV genomics, providing robust tools for global sequencing efforts aimed at tracking RSV evolution and assessing the efficacy of new therapeutic interventions both rapidly and at scale.

genomics↗