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1.
J Virol ; 97(11): e0085023, 2023 Nov 30.
Article in English | MEDLINE | ID: mdl-37943040

ABSTRACT

IMPORTANCE: Burkholderia infections are a significant concern in people with CF and other immunocompromising disorders, and are difficult to treat with conventional antibiotics due to their inherent drug resistance. Bacteriophages, or bacterial viruses, are now seen as a potential alternative therapy for these infections, but most of the naturally occurring phages are temperate and have narrow host ranges, which limit their utility as therapeutics. Here we describe the temperate Burkholderia phage Milagro and our efforts to engineer this phage into a potential therapeutic by expanding the phage host range and selecting for phage mutants that are strictly virulent. This approach may be used to generate new therapeutic agents for treating intractable infections in CF patients.


Subject(s)
Bacteriophages , Burkholderia , Phage Therapy , Humans , Anti-Bacterial Agents , Bacteriophages/genetics , Burkholderia/virology , Host Specificity , Cystic Fibrosis/microbiology , Burkholderia Infections/therapy
2.
Sci Rep ; 12(1): 5024, 2022 03 23.
Article in English | MEDLINE | ID: mdl-35323827

ABSTRACT

Post-weaning enteropathies in swine caused by pathogenic E. coli, such as post-weaning diarrhea (PWD) or edema disease (ED), remain a significant problem for the swine industry. Reduction in the use of antibiotics over concerns of antibiotic resistance and public health concerns, necessitate the evaluation of effective antibiotic alternatives to prevent significant loss of livestock and/or reductions in swine growth performance. For this purpose, an appropriate piglet model of pathogenic E. coli enteropathy is required. In this study, we attempted to induce clinical signs of post-weaning disease in a piglet model using a one-time acute or lower daily chronic dose of a pathogenic E. coli strain containing genes for both heat stable and labile toxins, as well as Shiga toxin. The induced disease state was monitored by determining fecal shedding and colonization of the challenge strain, animal growth performance, cytokine levels, fecal calprotectin, histology, fecal metabolomics, and fecal microbiome shifts. The most informative analyses were colonization and shedding of the pathogen, serum cytokines, metabolomics, and targeted metagenomics to determine dysbiosis. Histopathological changes of the gastrointestinal (GI) tract and tight junction leakage as measured by fecal calprotectin concentrations were not observed. Chronic dosing was similar to the acute regimen suggesting that a high dose of pathogen, as used in many studies, may not be necessary. The piglet disease model presented here can be used to evaluate alternative PWD treatment options.


Subject(s)
Enterotoxigenic Escherichia coli , Escherichia coli Infections , Microbiota , Swine Diseases , Animals , Anti-Bacterial Agents/pharmacology , Diarrhea/prevention & control , Diarrhea/veterinary , Escherichia coli Infections/prevention & control , Inflammation , Leukocyte L1 Antigen Complex , Metabolome , Swine , Swine Diseases/prevention & control , Weaning
3.
J Virol ; 95(19): e0239120, 2021 09 09.
Article in English | MEDLINE | ID: mdl-34287047

ABSTRACT

The majority of previously described Staphylococcus aureus bacteriophages belong to three major groups, namely, P68-like podophages, Twort-like or K-like myophages, and a more diverse group of temperate siphophages. Here, we present the following three novel S. aureus "jumbo" phages: MarsHill, Madawaska, and Machias. These phages were isolated from swine production environments in the United States and represent a novel clade of S. aureus myophage. The average genome size for these phages is ∼269 kb with each genome encoding ∼263 predicted protein-coding genes. Phage genome organization and content are similar to those of known jumbo phages of Bacillus sp., including AR9 and vB_BpuM-BpSp. All three phages possess genes encoding complete virion and nonvirion RNA polymerases, multiple homing endonucleases, and a retron-like reverse transcriptase. Like AR9, all of these phages are presumed to have uracil-substituted DNA which interferes with DNA sequencing. These phages are also able to transduce host plasmids, which is significant as these phages were found circulating in swine production environments and can also infect human S. aureus isolates. IMPORTANCE This study describes the comparative genomics of the following three novel S. aureus jumbo phages: MarsHill, Madawaska, and Machias. These three S. aureus myophages represent an emerging class of S. aureus phage. These genomes contain abundant introns which show a pattern consistent with repeated acquisition rather than vertical inheritance, suggesting intron acquisition and loss are active processes in the evolution of these phages. These phages have presumably hypermodified DNA which inhibits sequencing by several different common platforms. Therefore, these phages also represent potential genomic diversity that has been missed due to the limitations of standard sequencing techniques. In particular, such hypermodified genomes may be missed by metagenomic studies due to their resistance to standard sequencing techniques. Phage MarsHill was found to be able to transduce host DNA at levels comparable to that found for other transducing S. aureus phages, making it a potential vector for horizontal gene transfer in the environment.


Subject(s)
Genome, Viral , Myoviridae/genetics , Staphylococcus Phages/genetics , Staphylococcus aureus/virology , Animals , DNA, Viral/genetics , DNA-Directed RNA Polymerases/genetics , Genomics , Introns , Myoviridae/isolation & purification , Myoviridae/physiology , Myoviridae/ultrastructure , Sequence Analysis, DNA , Staphylococcus Phages/isolation & purification , Staphylococcus Phages/physiology , Staphylococcus Phages/ultrastructure , Swine , Transduction, Genetic , Viral Proteins/genetics
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