Literature DB >> 22354035

Alp, an arthropod-associated outer membrane protein of Borrelia species that cause relapsing fever.

Renee A Marcsisin1, Shelley A Campeau, Job E Lopez, Alan G Barbour.   

Abstract

Borrelia hermsii and other relapsing fever (RF) species are noted for their highly polymorphic surface antigens, the variable major proteins (VMP). Less is known about other surface proteins of these pathogens in either their vertebrate reservoirs or arthropod vectors. To further characterize these proteins, we elicited antibodies against VMP-less cells, noted antibody reactions against whole cells and cell components, and then subjected selected antigens to mass spectroscopy for amino acid sequencing for comparison against a B. hermsii genome database. One of the derived monoclonal antibodies, H0120, agglutinated spirochetes, and in Western blot analyses, it bound to a 14-kDa protein of whole cells and their membrane fractions but not after protease treatment. A search of open reading frames of the B. hermsii genome with extracted peptides identified the 14-kDa protein with bha128, a 453-nucleotide gene of the 175-kb linear plasmid. The bha128 gene was synthesized and expressed in Escherichia coli. The protein product was bound by antibody H0120. Genes homologous to bha128 occur in the RF species Borrelia turicatae, B. duttonii, and B. recurrentis but not in Lyme disease Borrelia species or other organisms. The following findings indicated an association of BHA128, renamed Alp, with the tick environment: (i) Alp was produced at higher levels at 23°C than at 34 °C; (ii) almost all spirochetes in tick salivary glands were bound by the H0120 antibody, but only ~1% of spirochetes in the blood of infected mice were bound; and (iii) infected mice produced antibodies to several B. hermsii antigens but not detectably to native or recombinant Alp.

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Year:  2012        PMID: 22354035      PMCID: PMC3347450          DOI: 10.1128/IAI.06419-11

Source DB:  PubMed          Journal:  Infect Immun        ISSN: 0019-9567            Impact factor:   3.441


  54 in total

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10.  The genome of Borrelia recurrentis, the agent of deadly louse-borne relapsing fever, is a degraded subset of tick-borne Borrelia duttonii.

Authors:  Magali Lescot; Stéphane Audic; Catherine Robert; Thi Tien Nguyen; Guillaume Blanc; Sally J Cutler; Patrick Wincker; Arnaud Couloux; Jean-Michel Claverie; Didier Raoult; Michel Drancourt
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  11 in total

1.  Fibronectin-binding protein of Borrelia hermsii expressed in the blood of mice with relapsing fever.

Authors:  Eric R G Lewis; Renee A Marcsisin; Shelley A Campeau Miller; Fong Hue; April Phillips; David P Aucoin; Alan G Barbour
Journal:  Infect Immun       Date:  2014-03-31       Impact factor: 3.441

2.  Large linear plasmids of Borrelia species that cause relapsing fever.

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3.  Development of genetic system to inactivate a Borrelia turicatae surface protein selectively produced within the salivary glands of the arthropod vector.

Authors:  Job E Lopez; Hannah K Wilder; Reid Hargrove; Christopher P Brooks; Karin E Peterson; Paul A Beare; Daniel E Sturdevant; Vijayaraj Nagarajan; Sandra J Raffel; Tom G Schwan
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4.  Expression of the Tick-Associated Vtp Protein of Borrelia hermsii in a Murine Model of Relapsing Fever.

Authors:  Renee A Marcsisin; Eric R G Lewis; Alan G Barbour
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Review 5.  Relapsing Fevers: Neglected Tick-Borne Diseases.

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6.  Assessing the Contribution of an HtrA Family Serine Protease During Borrelia turicatae Mammalian Infection.

Authors:  Clay D Jackson-Litteken; Amanda K Zalud; C Tyler Ratliff; Jacob I Latham; Travis J Bourret; Job E Lopez; Jon S Blevins
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Review 7.  Laboratory Diagnosis of Tick-Borne African Relapsing Fevers: Latest Developments.

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9.  Inactivation of genes for antigenic variation in the relapsing fever spirochete Borrelia hermsii reduces infectivity in mice and transmission by ticks.

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10.  Transcriptional Profiling the 150 kb Linear Megaplasmid of Borrelia turicatae Suggests a Role in Vector Colonization and Initiating Mammalian Infection.

Authors:  Hannah K Wilder; Sandra J Raffel; Alan G Barbour; Stephen F Porcella; Daniel E Sturdevant; Benjamin Vaisvil; Vinayak Kapatral; Daniel P Schmitt; Tom G Schwan; Job E Lopez
Journal:  PLoS One       Date:  2016-02-04       Impact factor: 3.240

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