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C F Garon

Publications and source records attributed to C F Garon.

At least 19 recordsLinked to original sources

gyrB mutations in coumermycin A1-resistant Borrelia burgdorferi.

We have isolated and characterized mutants of Borrelia burgdorferi that are resistant to the antibiotic coumermycin A1, which targets the B subunit of DNA gyrase. Mutants had either 100- or 300-fold higher resistance to coumermycin A1 than wild-type B. burgdorferi. In each case, a single point mutation in the gyrB gene converted Arg-133 to Gly or Ile. Mutations in the homologous Arg residue of Escherichia coli DNA gyrase are also associated with resistance to coumarin antimicrobial agents.

Amino Acid Sequence

Analysis of the distribution and molecular heterogeneity of the ospD gene among the Lyme disease spirochetes: evidence for lateral gene exchange.

Analysis of the ospD gene has revealed that this gene is not universal among Lyme disease spirochete isolates. The gene was found to be carried by 90, 50, and 24% of the Borrelia garinii, B. afzelii, and B. burgdorferi isolates tested. Size variability in the ospD-encoding plasmid was also observed. Sequence analysis has demonstrated the presence of various numbers of a 17-bp repeated sequence in the upstream control (promoter) region of the gene. In addition, a region within the coding sequence where various insertions, deletions, and direct repeats occur was identified. ospD gene sequences from 31 different isolates were determined and utilized in pairwise sequence comparisons and construction of a gene tree. These analyses suggest that the ospD gene was the target of several recombinational events and that the gene was recently acquired by Lyme disease spirochetes and laterally transferred between species.

Amino Acid Sequence

Genetic transformation of the Lyme disease agent Borrelia burgdorferi with coumarin-resistant gyrB.

No useful method to genetically manipulate Borrelia burgdorferi, the causative agent of Lyme disease, has been developed previously. We have used resistance to the coumarin antibiotic coumermycin A1, an inhibitor of DNA gyrase, as a genetic marker to monitor the transformation of B. burgdorferi by electroporation. Introduction of site-directed mutations into the gyrB gene demonstrated that transformation was successful, provided evidence that homologous recombination occurs on the chromosome, and established that mutations at Arg-133 of DNA gyrase B confer coumermycin A1 resistance in B. burgdorferi. The coumermycin A1-resistant gyrB marker and genetic transformation can now be applied toward dissecting the physiology and pathogenesis of the Lyme disease agent on a molecular genetic level.

Aminocoumarins

Variation in the size of the ospA-containing linear plasmid, but not the linear chromosome, among the three Borrelia species associated with Lyme disease.

The aetiological agents of Lyme disease form a phylogenetically heterogeneous group, composed of three species, Borrelia burgdorferi, Borrelia garinii, and group VS461. We have compared the sizes of the linear plasmid that carries the genes encoding the major outer-surface proteins OspA and OspB as well as the size and structure of the chromosome among the Lyme disease spirochaetes. We have found differences in the sizes of the ospA-containing plasmids, but not the linear chromosomes among the three species. The ospA-containing plasmid size of 50 kb in B. burgdorferi isolates is significantly smaller than the size of 55 kb in B. garinii isolates and 56 kb in group VS461 isolates. The chromosome was found to be linear in all three Borrelia species, but not significantly different in size.

Antigens, Surface

Coumermycin A1 inhibits growth and induces relaxation of supercoiled plasmids in Borrelia burgdorferi, the Lyme disease agent.

Coumermycin A1 is an inhibitor of DNA gyrase, an enzyme that catalyzes supercoiling of DNA and is required for bacterial DNA replication. We have investigated the activity of this coumarin antibiotic on Borrelia burgdorferi, a spirochete and the causative agent of Lyme disease. B. burgdorferi was more susceptible than many other eubacteria to coumermycin as well as novobiocin, another coumarin antibiotic; this contrasted with its relative resistance to the DNA gyrase inhibitors nalidixic acid, oxolinic acid, and ciprofloxacin. Coumermycin at 0.2 micrograms/ml inhibited the growth of B. burgdorferi B31 in BSK II medium. A 100-fold-lower concentration induced the relaxation of two negatively supercoiled circular plasmids within 2 h. Plasmid supercoiling was restored within 2 h of removal of coumermycin. These results suggest that B. burgdorferi has a DNA gyrase and that this enzyme's activity is required for growth. Furthermore, structural analogs of coumermycin may be considered as treatments for Lyme disease.

Aminocoumarins

Specific and nonspecific responses of murine B cells to membrane blebs of Borrelia burgdorferi.

Lymphocyte blastogenesis assays and immunoblotting were used to investigate and compare murine B-cell responses to preparations of extracellular membrane blebs (BAg) and spirochetes (Ag) of Borrelia burgdorferi. Immunoblotting BAg, Ag, and medium control preparations with serum from naive and infected C57BL/10 mice revealed that BAg and Ag had similar specific reactivity profiles except that major antigens of 83, 60, and 41 kDa were detected in Ag but not in BAg. It was determined that 1 microgram (dry weight) of Ag contained 0.0051 and 0.0063 microgram of outer surface proteins A (OspA) and OspB, respectively, whereas 1 microgram (dry weight) of BAg contained 0.0024 microgram of OspA and 0.0015 microgram of OspB. Both BAg and Ag caused blastogenesis in cultures of spleen cells from both groups of mice, but BAg-stimulated lymphocytes exhibited significantly greater (P < or = 0.05) blastogenesis after 2 or 6 days of culture than did lymphocytes stimulated by Ag or medium control. Flow cytometry and antibody capture enzyme-linked immunosorbent assays identified responding lymphocytes as B cells which secreted polyclonal immunoglobulin M (IgM) but not IgG or IgA. Treatment of BAg and lipopolysaccharide controls with polymyxin B resulted in as much as 20.7 and 54.3% mean decreases in blastogenesis, respectively. Fractionation of BAg or Ag by ultracentrifugation before culture with spleen cells from naive mice indicated that B-cell blastogenesis was probably associated with spirochetal membranes. The results of this study demonstrate that specific humoral responses are directed towards extracellular membrane blebs which lack the 83-, 60-, and 41-kDa antigens of intact spirochetes and that blebs also possess significant nonspecific mitogenic activity for murine B cells. This activity was not due entirely to typical lipopolysaccharide or OspA and OspB lipoproteins.

Animals

Variability of osp genes and gene products among species of Lyme disease spirochetes.

A comparison of the osp operon in 24 Lyme disease isolates, including representatives from each of the three established species, Borrelia burgdorferi, Borrelia garinii, and group VS461, was conducted. Several properties were assessed to determine whether the variability observed in this operon was reflective of the species of the isolate. At the transcriptional level, start site and Northern (RNA) blot analyses were conducted. B. garinii and VS461 group isolates were found to possess an untranslated leader sequence 6 nucleotides longer than that observed in B. burgdorferi isolates. By Northern blot analyses all Lyme disease isolates, except the B. garinii isolate VS102, were found to produce a polycistronic full-length ospAB message. Isolate VS102 produced a truncated message lacking the ospB portion of the transcript. Southern blot analyses suggest that the deletion occurred at the DNA level and was not due to a posttranscriptional event. Analysis of the outer surface proteins by two-dimensional gel electrophoresis demonstrated that the OspB isoelectric points were variable, with the OspB of B. garinii isolates exhibiting a pronounced acidic shift. The reactivity of different isolates to OspA and -B monoclonal antibodies and to a hyperimmune anti-ospAB serum was also variable. The results presented here demonstrate genotypic and phenotypic heterogeneity in the osp operon at both the inter- and intraspecies levels. The results have implications concerning the use of the osp genes or their gene products in the development of a Lyme disease vaccine, as diagnostic markers of Lyme disease, and in subtyping of Lyme disease isolates.

Antigens, Bacterial

Transcriptional analyses and mapping of the ospC gene in Lyme disease spirochetes.

In Lyme disease spirochetes, the ospC gene encodes a 22.7-kDa protein referred to as either the pC or the OspC protein. Using a variety of electrophoretic approaches followed by Southern blotting and probing with oligonucleotide probes, we mapped the ospC gene to a circular 26-kb plasmid. The ospC gene represents the first gene to be mapped to a circular plasmid in Lyme disease spirochetes. The occurrence of this gene in isolates belonging to each of the three Lyme disease-associated species, Borrelia burgdorferi, Borrelia garinii, and the VS461 group, was evaluated. The ospC gene was found to occur in all 21 isolates tested from each of the three species. Differential hybridization with a series of ospC probes in both Northern (RNA) and Southern blot analyses demonstrated that there is sequence variability in the ospC gene among isolates. While the gene was found to be present in all isolates, not all actively transcribed the gene. Transcriptional start site analyses suggest that the gene may be under the control of multiple promoters that are highly similar in nucleotide sequence.

Antigens, Bacterial

Identification of a protein in several Borrelia species which is related to OspC of the Lyme disease spirochetes.

Using oligonucleotide probes which have previously been shown to be specific for the ospC gene found in the Lyme disease spirochete species Borrelia burgdorferi, B. garinii, and group VS461, we detected an ospC homolog in other Borrelia species including B. coriaceae, B. hermsii, B. anserina, B. turicatae, and B. parkeri. In contrast to the Lyme disease spirochetes, which carry the ospC gene on a 26-kb circular plasmid, we mapped the gene in other Borrelia species to linear plasmids which varied in size among the isolates tested. Some isolates carry multiple copies of the gene residing on linear plasmids of different sizes. The analyses conducted here also demonstrate that these Borrelia species contain a linear chromosome. Northern (RNA) blot analyses demonstrated that the gene is transcriptionally expressed in all species examined. High levels of transcriptional expression were observed in some B. hermsii isolates. Transcriptional start site analyses revealed that the length of the untranslated leader sequence was identical to that observed in the Lyme disease spirochete species. By Western blotting (immunoblotting) with antiserum (polyclonal) raised against the OspC protein of B. burgdorferi, we detected an immunoreactive protein of the same molecular weight as the OspC found in Lyme disease spirochete species. The results presented here demonstrate the presence of a protein that is genetically and antigenically related to OspC which is expressed in all species of the genus Borrelia tested.

Antigens, Bacterial

Identification of a third genomic group of Borrelia burgdorferi through signature nucleotide analysis and 16S rRNA sequence determination.

As part of a continuing effort to assess genetic variation among isolates of Borrelia burgdorferi we have determined the 16S rRNA signature nucleotide makeup of two tick isolates from the USSR. Signature nucleotides were identified via reverse transcriptase primer extension sequencing of select regions of the 16S rRNA molecule. In addition, the near complete 16S rRNA sequence of one of the isolates, R-IP3, was determined and utilized in a phylogenetic assessment. The sequence was aligned with the 16S rRNA sequences of other B. burgdorferi isolates as well as with other Borrelia species. Distance matrix analyses were performed and a phylogenetic tree was constructed. These analyses demonstrate that these isolates belong to a third previously unidentified genomic group of B. burgdorferi.

Base Sequence

Interactions between extracellular Borrelia burgdorferi proteins and non-Borrelia-directed immunoglobulin M antibodies.

Previous work showed that outer surface protein A (OspA) and OspB of Borrelia burgdorferi may occur within an extracellular multiprotein complex, which was resolved by electrophoresis as an 83-kDa major extracellular protein band. To characterize the 83-kDa band, we sequenced the N terminus of the predominant peptide in the band and examined the interaction between the associated proteins. Peptide sequence and amino acid composition comparisons showed identity with the heavy chain of immunoglobulin M (IgM). Reduction sensitivity experiments and the recognition of the band by antibodies specific for rabbit mu chain indicated that the multiprotein complex contained pentameric IgM. Immunoelectron microscopy showed that anti-mu chain antibodies and monoclonal antibodies to OspA and OspB bound to extracellular amorphous material surrounding cells. Furthermore, the Osps coprecipitated with either nonspecific polyclonal rabbit IgM antibodies or with murine monoclonal anti-human serum albumin IgM antibodies, using insoluble anti-mu chain antibody conjugates. Although the apparent 83-kDa complex was stable under conditions of chelation and concentrated salts, it was disrupted by treatment with neuraminidase. These results indicate that extracellular B. burgdorferi proteins, including OspA and OspB, interact with IgM. The association is apparently not a classic antibody-antigen interaction but may result from other mechanisms.

Amino Acid Sequence

Phylogenetic analysis of the genus Borrelia: a comparison of North American and European isolates of Borrelia burgdorferi.

We have sequenced the 16S rRNA molecules from four species of Borrelia and from six isolates of Borrelia burgdorferi via the reverse transcriptase primer extension method. The sequences were aligned and evolutionary relationships were determined, including the calculation of evolutionary distances and the construction of a phylogenetic tree. These analyses demonstrate significant divergence among B. burgdorferi isolates, with the European isolates G1 and G2 residing most distant from the main cluster. Signature nucleotides which distinguish B. burgdorferi from all other members of this genus and which distinguish the European isolates G1 and G2 from the North American isolates B31, Sh-2-82, and 1352 were identified. Finally, Southern blot analyses were performed to compare the restriction patterns of the genes coding for rRNA and to relate our data to the grouping scheme of Postic et al. (D. Postic, C. Edlinger, C. Richaud, F. Grimont, J. Dufresne, P. Perolat, G. Baranton, and P. A. D. Grimont, Res. Microbiol. 141:465-475, 1990).

Base Sequence

Development of polymerase chain reaction primer sets for diagnosis of Lyme disease and for species-specific identification of Lyme disease isolates by 16S rRNA signature nucleotide analysis.

We have determined and compared partial 16S rRNA sequences from 23 Lyme disease spirochete isolates and aligned these with 8 sequences previously presented. The 16S rRNA signature nucleotide compositions were defined for each isolate and compared with the genomic species signature nucleotide sets previously established. To identify positions truly indicative of species classification which could serve as targets for polymerase chain reaction species-specific identification primers, 16S rRNA-based phylogenetic analyses were conducted. On the basis of the identified signature nucleotides, we designed polymerase chain reaction primer sets which (i) amplify all spirochete species associated with Lyme disease and (ii) differentiate between these species. The primer sets were tested on 38 Borrelia isolates associated with Lyme disease and were found to be sensitive and specific. All Lyme disease isolates tested were amplification positive. These primers allow for the rapid species identification of Lyme disease isolates.

Base Sequence

Species-specific identification of and distinction between Borrelia burgdorferi genomic groups by using 16S rRNA-directed oligonucleotide probes.

Examination of a number of previously published aligned Borrelia 16S rRNA sequences revealed the presence of regions which could serve as oligonucleotide probe targets for both species-specific identification of Borrelia burgdorferi and distinction between genomic groups. Total cellular RNA isolated from Borrelia cultures was used in slot blot analysis. Radiolabeled oligonucleotides designed to hybridize to specific 16S rRNA targets were used as probes. These probes allowed for both species-specific identification and genomic group typing of B. burgdorferi.

Bacterial Typing Techniques

Tandem insertion sequence-like elements define the expression site for variable antigen genes of Borrelia hermsii.

The spirochete Borrelia hermsii avoids the immune response of its mammalian host through multiphasic antigenic variation. Serotype specificity is determined by variable antigens, Vmp proteins, in the outer membrane. Through nonreciprocal recombination between linear plasmids, a formerly silent vmp gene replaces another vmp gene downstream from a common expression site. To further characterize this activating site, we determined the nucleotide sequence of 6.9 kb of the common upstream expression region of strain HS1 of B. hermsii. Preceding the vmp gene promoter and a poly(dT.dA) run were three imperfectly repeated segments of 2 kb. Each of the 2-kb segments contained 1-kb elements with inverted repeats of approximately 0.2 kb each at their termini. The potential of the 1-kb elements to form stem-and-loop structures was demonstrated by heteroduplex analysis. There was no evidence of the presence of the elements elsewhere in the genome of B. hermsii. One or more of these elements may confer the unidirectionality that characterizes vmp gene switches.

Animals

Immune capture and detection of Borrelia burgdorferi antigens in urine, blood, or tissues from infected ticks, mice, dogs, and humans.

Current biological and serological techniques for demonstrating infections by Borrelia burgdorferi can be inconclusive. In order to monitor Lyme borreliosis, we developed a rapid and sensitive assay for B. burgdorferi antigens in infected hosts. Polyclonal rabbit antisera were raised against membrane vesicles and an 83-kDa vesicle-associated protein band that was purified from in vitro B. burgdorferi cultures. Immunoglobulin G (IgG) antibodies were recovered from these sera and tested for a species-specific reaction with several geographically diverse Borrelia isolates by immunoblot analysis. Parlodion-coated electron microscope grids were activated with anti-vesicle F(ab')2 fragments and then incubated with confirmed or experimental sources of spirochetal antigens. Such sources included cultured spirochetes; spirochete culture supernatants; samples of urine, blood, or serum from mice, dogs, and humans; triturates of Ixodes ticks; and bladder, spleen, liver, kidney, heart, or brain tissues from infected or control mice. Captured antigens were assayed by immune electron microscopy by using anti-83-kDa IgG antibodies and protein A-colloidal gold conjugates. The results indicated that B. burgdorferi appears to shed surface antigens which are readily detectable in urine, blood, and several organs from infected hosts. Such antigens were detectable in mouse urine at dilutions exceeding 10(-6). Intact spirochetes were frequently observed on grids incubated with blood, spleen, or bladder preparations, and B. burgdorferi was reisolated from the urinary bladders of all experimentally infected mice. These results indicated that B. burgdorferi antigens arise in a variety of host materials. Such antigens can be captured and identified with specific polyclonal antibodies, providing a sensitive assay for monitoring and studying Lyme borreliosis.

Animals

Genetics of Borrelia burgdorferi.

Structural analysis by electronmicroscopy and pulsed field agarose gel electrophoresis of the genome of Borrelia burgdorferi has revealed a 1000 kilobase (kb) chromosome and a unique type of extra chromosomal linear DNA, as well as supercoiled circular DNA. The plasmid DNA ranged in size from 1.5 to 50 kb. Gene mapping of the ospA and ospB genes have placed them on the 49 kb linear plasmid molecule. The osp operon of B. burgdorferi has been extensively characterized at the molecular level.

Animals

Analysis of supercoiled circular plasmids in infectious and non-infectious Borrelia burgdorferi.

Linear plasmids are widely distributed in isolates of Borrelia burgdorferi, but the prevalence of supercoiled circular (SC) plasmids has not been clearly established. Enriching for SC plasmids on ethidium bromide density-gradients revealed that a low passage of strain Sh-2-82 of B. burgdorferi has at least six SC plasmids (8.4, 8.8, 20, 26, 29 and 51 kb). In addition, several of the SC plasmids were observed by electron microscopy to form concatenated structures. Because of the high incidence of coupled SC plasmids and the effect of such structures on plasmid mobility, we suggest that they could be mistaken for a single DNA species having a high molecular weight when total DNA from B. burgdorferi is examined by agarose-gel electrophoresis. Of the six SC plasmids in strain Sh-2-82, four could still be detected after two years of continuous in vitro passaging in BSK II medium. The two SC plasmids lost after a maximum of 20 passages, pBBC1 (8.4 kb) and pBBC2 (8.8 kb), shared a high degree of DNA sequence similarity, suggesting that their apparent instability may be a unique feature of these closely related plasmids. Two higher passaged variants of strain Sh-2-82, P20 and P202, were shown by hybridization to lack pBBC1 and pBBC2 sequences and were unable to infect the white-footed mouse, Peromyscus leucopus. However, six of 14 unrelated isolates that infected this rodent and Syrian hamsters also lacked pBBC1 and pBBC2 sequences. None of five unrelated but highly passaged non-infectious isolates carried either pBBC1 or pBBC2 sequences. These data indicate that pBBC1 and pBBC2 do not encode constitutively expressed proteins required for infectivity in our experimental system. Nevertheless, eight of the 13 infectious strains examined did carry pBBC1 and/or pBBC2, indicating that these two closely related plasmids can be detected in a wide range of unrelated isolates of B. burgdorferi.

Animals