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Multiple and Diverse vsp and vlp Sequences in Borrelia miyamotoi, a Hard Tick-Borne Zoonotic Pathogen
1Department of Microbiology and Molecular Genetics, University of California Irvine, Irvine, California, United States of America.
Abstract:
Based on chromosome sequences, the human pathogen Borrelia miyamotoi phylogenetically clusters with species that cause relapsing fever. But atypically for relapsing fever agents, B. miyamotoi is transmitted not by soft ticks but by hard ticks, which also are vectors of Lyme disease Borrelia species. To further assess the relationships of B. miyamotoi to species that cause relapsing fever, I investigated extrachromosomal sequences of a North American strain with specific attention on plasmid-borne vsp and vlp genes, which are the underpinnings of antigenic variation during relapsing fever. For a hybrid approach to achieve assemblies that spanned more than one of the paralogous vsp and vlp genes, a database of short-reads from next-generation sequencing was supplemented with long-reads obtained with real-time DNA sequencing from single polymerase molecules. This yielded three contigs of 31, 16, and 11 kb, which each contained multiple and diverse sequences that were homologous to vsp and vlp genes of the relapsing fever agent B. hermsii. Two plasmid fragments had coding sequences for plasmid partition proteins that differed from each other from paralogous proteins for the megaplasmid and a small plasmid of B. miyamotoi. One of 4 vsp genes, vsp1, was present at two loci, one of which was downstream of a candiate prokaryotic promoter. A limited RNA-seq analysis of a population growing in the blood of mice indicated that of the 4 different vsp genes vsp1 was the one that was expressed. The findings indicate that B. miyamotoi has at least four types of plasmids, two or more of which bear vsp and vlp gene sequences that are as numerous and diverse as those of relapsing fever Borrelia. The database and insights from these findings provide a foundation for further investigations of the immune responses to this pathogen and of the capability of B. miyamotoi for antigenic variation.
Insights
Borrelia miyamotoi, a relapsing fever pathogen transmitted by hard ticks, possesses diverse plasmid-borne vsp and vlp genes, similar to other relapsing fever Borrelia species. These findings suggest B. miyamotoi has significant antigenic variation capabilities.
Area of Science:
- Microbiology
- Genomics
- Pathogen Biology
Background:
- Borrelia miyamotoi is a human pathogen phylogenetically related to relapsing fever Borrelia species.
- Unlike typical relapsing fever agents, B. miyamotoi is transmitted by hard ticks, vectors also known for Lyme disease Borrelia species.
- Antigenic variation, mediated by plasmid-borne variable surface protein (vsp) and variable large protein (vlp) genes, is a key characteristic of relapsing fever Borrelia.
Purpose of the Study:
- To investigate the extrachromosomal sequences of a North American Borrelia miyamotoi strain.
- To specifically analyze plasmid-borne vsp and vlp genes to understand antigenic variation potential.
- To compare the genetic makeup of B. miyamotoi with known relapsing fever agents.
Main Methods:
- Utilized a hybrid sequencing approach combining next-generation short-reads and real-time single-molecule long-reads.
- Assembled extrachromosomal DNA, focusing on regions containing paralogous vsp and vlp genes.
- Performed RNA-sequencing (RNA-seq) on B. miyamotoi grown in mouse blood to assess gene expression.
Main Results:
- Successfully assembled three large contigs (31, 16, and 11 kb) containing diverse homologous sequences to vsp and vlp genes from Borrelia hermsii.
- Identified coding sequences for distinct plasmid partition proteins, indicating multiple plasmid types.
- Found that vsp1 gene was present at two loci and was expressed in B. miyamotoi populations in mouse blood.
Conclusions:
- Borrelia miyamotoi harbors at least four types of plasmids, with at least two carrying numerous and diverse vsp and vlp gene sequences.
- The genetic makeup of B. miyamotoi suggests a significant capability for antigenic variation, comparable to other relapsing fever Borrelia species.
- The generated database and findings provide a foundation for future research on B. miyamotoi immune evasion strategies and pathogenesis.
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