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Expression and characterization of HlyX hemolysin from Leptospira interrogans serovar Copenhageni: potentiation of hemolytic activity by LipL32.

The HlyX, a putative hemolysin identified from the Leptospira genomes, was cloned, expressed in Escherichia coli, purified, and its hemolytic activity was confirmed. Mouse polyclonal antiserum against the recombinant HlyX recognized HlyX-related antigens in a panel of Leptospira species extracts and it was also able to abolish the hemolytic activity of HlyX. A mixture of HlyX and LipL32, a known hemolysin from Leptospira, induced hemolysis in a synergistic way that was fully inhibited by antiserum against either protein. Moreover, sera from patients with leptospirosis also recognized the recombinant HlyX, showing that it is presented to the host immune system during Leptospira infection.

Amino Acid Sequence↗

Viability of Leptospira in BacT/ALERT MB media.

Recovery of Leptospira in the clinical setting is typically low as specialized culture media is needed. Previous data demonstrated that blood culture media commonly available to most clinical laboratories do not adequately sustain viable Leptospira. We hypothesized that mycobacterial blood culture medium, which is often readily available to most clinical laboratories, might be able to support the growth of Leptospira. Leptospires and fresh human blood were inoculated into BacT/ALERT (bioMérieux, Durham NC) mycobacterial (MB) and enriched mycobacterial bottles. Standard aerobic (FA) and anaerobic (SN) bottles were also inoculated as a control group. Inoculated bottles were then evaluated for their ability to support Leptospira growth using dark-field microscopy, subculture, and an automated growth detection system. Viable leptospires were detected in MB bottles up to day 14. FA and SN were performed in accordance with prior data. We conclude that MB and enriched MB bottles of the BacT/ALERT blood culture system can support viable leptospires.

Blood↗

Prevention of renal infection and urinary shedding in dogs by a Leptospira vaccination.

Prevention of urinary shedding of Leptospira interrogans spp. by chronically infected dogs remains a key objective of the vaccination in dogs against leptospirosis which is a zoonotic disease. An inactivated bivalent vaccine composed of Leptospira interrogans serovars icterohaemorrhagiae [L. icterohaemorrhagiae] and canicola [L. canicola] bacterins was tested for its ability to protect puppies against a challenge exposure with L. icterohaemorrhagiae. The vaccine was administered twice at a 3-week interval to six puppies aged from 8 to 9 weeks. Six other puppies were used as unvaccinated controls. All puppies were challenged 2 weeks after the second vaccine injection by intraperitoneal (IP) administration of L. icterohaemorrhagiae (day 0). Clinical signs, haematological and biochemical changes and evidence of Leptospira in blood, urine and kidney were monitored for 4 weeks after the challenge exposure (days 0-28). Puppies were euthanised on day 28 for post-mortem and histological examinations of liver and kidney. Control group presented clinical pictures of severe or subclinical infection. One dog developed severe clinical signs (hypothermia, depression, anorexia, abdominal pain, dehydration, icterus, weight loss) and died on post-infection day (PID) 7 due to an acute renal failure. Gross and microscopic lesions were in accordance with this clinical pattern. In the five remaining control dogs, the challenge exposure induced mainly a systemic infection including leptospiraemia, leptospiruria and renal carriage. The vaccinated group remained healthy throughout the study period. In conclusion, immunisation with a Leptospira vaccine was shown to protect dogs against symptomatology and leptospiraemia, urine shedding and renal infection.

Animals↗

A multiplex PCR for the detection of Brucella spp. and Leptospira spp. DNA from aborted bovine fetuses.

Bovine brucellosis and leptospirosis are important causes of bovine abortion around the world. Both diseases can be serologically diagnosed, but many factors may cause false positive and negative results. Direct methods based on bacteriological isolation are usually employed, but they are difficult, time consuming and dangerous. Monoplex polymerase chain reaction (PCR) have been successfully described for the detection of Brucella spp. and Leptospira spp. Aiming at improvement in the direct diagnosis, a multiplex PCR (mPCR) for the detection of these agents in aborted bovine fetuses is described. The detection threshold of the mPCR was evaluated in experimentally contaminated bovine clinical samples using a conventional proteinase K/SDS or a boiling-based extraction protocols. The mPCR was applied to two groups of clinical samples: 63 episodes of bovine abortion and eight hamsters experimentally infected with Leptospira interrogans serovar pomona. Adopting microbiological isolation as reference, the test showed a sensitivity of 100% in both groups of clinical samples. Seven samples collected from bovine fetuses were Brucella spp. culture negative but showed positive results in mPCR. Regarding Leptospira spp. detection, similar results were observed in three bovine clinical samples. All hamsters infected with Leptospira were positive in both microbiological culture and mPCR. The boiling extraction protocol showed better results in some clinical samples, probably by the removal of PCR inhibitors by heat treatment. The high sensitivity, simplicity and the possibility of detection of both bacteria in a single tube reaction support the use of the mPCR described in the routine diagnosis.

Abortion, Veterinary↗

Sanitary status of oocytes and embryos collected from heifers experimentally exposed to Leptospira borgpetersenii serovar hardjobovis.

In a preliminary trial and three experiments, a total of 30 Holstein heifers were experimentally infected with a culture of Leptospira borgpetersenii serovar hardjobovis via one or more routes (uterine, cervical supraconjunctival, intranasal) and oviductal and uterine fluids recovered post-mortem or in vivo following superovulation with FSH. All routes of administration were effective in establishing Leptospira infection in the reproductive tract and Leptospira were identified in the oviductal and uterine fluids of all 30 heifers by microscopy. The incidence of infection was confirmed by positive identification of serum antibodies by the microscopic agglutination test (MAT). Twenty-one samples of the embryos (n = 59) recovered were cultured using bacteriological procedures and all tested negative for the infectious microorganism. Using polymerase chain reaction (PCR) assay, however, showed that 29% (7/24) of morula and blastocyst stage embryos, and one out of 29 oocytes tested positive for the presence of leptospiral DNA. A single oocyte or embryo collected from the infected heifers was inoculated intravenously to 26 test heifers. None of the test heifers developed antibody titers to Leptospira. It was concluded that, despite the presence of leptospires in the reproductive tract of donor animals and the association of leptospiral DNA with uterine stage embryos, the transmission of this disease is unlikely to occur by transfer of in vivo produced embryos in the bovine.

Animals↗

Identification of Leptospira inadai by continuous monitoring of fluorescence during rapid cycle PCR.

Seven new Leptospira isolates from rats, a buffalo, and contaminated media showed either reactive serology against more than 1 serogroup or no reactive serology against a reference panel of 22 serovars in the microscopic agglutination test (MAT). Because of these inconclusive results, the 16S rDNA sequences of these isolates were determined and found to resemble that of the type strain of Leptospira inadai (L. inadai), serovar lyme strain 10, which is considered to be nonpathogenic for humans. Comparative analyses of other Leptospira 16S rDNA sequences from databases revealed a L. inadai-specific signature sequence, against which an amplification primer was designed. This primer when used in conjunction with an universal primer enabled the trial of a rapid PCR protocol in which fluorescence emissions due to binding of SYBR Green I dye to PCR products were continuously monitored during rapid thermal cycling. A melting curve acquired immediately after PCR was used to distinguish the intended product. The thermal cycling and continuous monitoring of fluorescence emission were accomplished by the LightCycler; the whole procedure of 30 PCR cycles and melting curve acquisition required only 20 minutes. The primer achieved the required specificity, as the intended PCR product resulted only from 6 confirmed L. inadai reference strains and 7 field isolates that had been verified as L. inadai by the 16S rDNA sequencing, but not from 16 reference strains of Leptospira belonging to 7 other genospecies. Furthermore, these experiments showed that the PCR protocol was robust because target DNA of different conditions, which were extracted by either 1 of the 4 methods used, could be detected.

Animals↗

First evidence for gene replacement in Leptospira spp. Inactivation of L. biflexa flaB results in non-motile mutants deficient in endoflagella.

Leptospira spp. offer many advantages as model bacteria for the study of spirochaetes. However, homologous recombination between introduced DNA and the corresponding chromosomal loci has never been demonstrated. A unique feature of spirochaetes is the presence of endoflagella between the outer membrane sheath and the cell cylinder. We chose the flaB flagellin gene, constituting the flagellar core, as a target for gene inactivation in the saprophyte Leptospira biflexa. The amino acid sequence of the FlaB protein of L. biflexa was most similar to those of spirochaetes Brachyspira hyodysenteriae (agent of swine dysentery), Leptospira interrogans (agent of leptospirosis) and Treponema pallidum (agent of syphilis). A suicide vector containing the L. biflexa flaB gene disrupted by a kanamycin marker was UV irradiated or alkali denatured before electroporation. This methodology allowed the selection of many kanamycin-resistant colonies resulting from single and double cross-over events at the flaB locus. The double recombinant mutants are non-motile, as visualized in both liquid and semi-solid media. In addition, a flaB mutant selected for further analysis was shown to be deficient in endoflagella by electron microscopy. However, most of the transformants had resulted from a single homologous recombination event, giving rise to the integration of the suicide vector. We evaluated the effect of the sacB and rpsL genes in L. biflexa as potential counterselectable markers for allelic exchange, and then used the rpsL system for the positive selection of flaB double recombinants in a streptomycin-resistant strain. Like the flaB mutant studied above, the Strr double cross-over mutant was non-motile and deficient in endoflagella. Our results demonstrate that FlaB is involved in flagella assembly and motility. They also show the feasibility of performing allelic replacement in Leptospira spp. by homologous recombination.

Alleles↗

Leptospira fainei sp. nov., isolated from pigs in Australia.

Pathogenic leptospires can be causative agents of reproductive problems in pigs. Cultures of uteri and kidneys from two pigs herds in New South Wales and Victoria (Australia) yielded five strains identified as Leptospira on morphological and cultural grounds. Phenotypic characteristics (growth at 13 and 30 degrees C, growth in the presence of 8-azaguanine) were intermediate between those of pathogenic and saprophytic leptospires. No cross-agglutination was observed with reference antisera representing the 24 pathogenic serogroups and the main saprophytic ones. Antiserum against one of the strains did not agglutinate reference stains representative of any serogroup. This provided evidence of a new serovar, designated hurstbridge. Genomic characterization of the five strains was achieved using five molecular approaches. Mapped restriction site polymorphisms in the rrs (16S rRNA) gene were not related to those of any reference strains. Arbitrarily primed PCR fingerprints suggested clonality of the five strains. The strains all showed an identical and unique PFGE profile. PCR, using primers specific for the rrs gene of pathologic leptospires, amplified corresponding sequences from the strains. DNA-DNA hybridization (and reciprocal experiments) using the S1 nucleas/TCA method was performed between one of the strains and the reference strains of Leptospira species. The homology ranged from 0 to 36% (the latter being was Leptospira inadai) thus satisfying the criterion of a new species, Leptospira fainei (type strain BUT 6T). Phylogenetic analysis of 16S rRNA sequence showed that L. fainei and L. inadai formed a clade separate from the previously recognized 'saprophyte' and 'pathogen' clades.

Animals↗

DNA relatedness of Leptospira strains isolated from beef cattle in Zimbabwe.

The DNA relatedness of 17 Leptospira strains isolated from beef cattle in Zimbabwe was determined using the hydroxyapatite method. Similarly to previously speciated African strains, all Zimbabwe isolates belonged to either Leptospira borgpetersenii or Leptospira kirschneri. All serovars within serogroups Pyrogenes (kwale, mombe and a strain closely related to serovar nigeria), Hebdomadis (marondera and mhou), Tarassovi (ngavi) and Sejroe (balcanica and hardjo) were L. borgpetersenii. L. kirschneri contained all strains in serovars of serogroups Icterohaemorrhagiae (zimbabwe), Australis (fugis), Bataviae (paidjan) and Pomona (a strain closely related to mozdok). The species designations of the Zimbabwe fugis and paidjan strains were different from those of the reference strains of these two serovars, both of which belong to Leptospira interrogans.

Animals↗

Differentiation of Leptospira species and serovars by PCR-restriction endonuclease analysis, arbitrarily primed PCR and low-stringency PCR.

Reference strains from 30 serovars representing seven species of Leptospira and 48 recent isolates from human patients, dogs and rats, were characterised by polymerase chain reaction-restriction endonuclease analysis (PCR-REA), arbitrarily primed PCR (AP-PCR) and low stringency PCR (LS-PCR). PCR-REA analysis yielded seven groups among 29 serovars of pathogenic Leptospira; the non-pathogenic L. biflexa serovar patoc was not amplified with the primer pairs studied. AP-PCR and LS-PCR fingerprinting resulted in 25 and 21 distinct profiles, respectively, among the 30 reference strains. The results of the three PCR-based techniques were highly concordant and were in general agreement with those from previous DNA studies, confirming the high level of polymorphism among Leptospira species and serovars, and supported the concept of the serovar as the basic taxonomic unit of leptospiral classification. Results of the PCR-based typing methods for 11 randomised leptospiral strains, 36 clinical isolates from human patients and dogs and 12 survey isolates from trapped rats agreed with those from serological identification. With one exception, isolates of the same serovar gave identical profiles irrespective of the source. AP-PCR and LS-PCR are simple to perform and interpret, and appear to be useful for characterising isolates of Leptospira spp. for diagnostic and epidemiological purposes.

Animals↗

A basic study of chemotaxis of leptospiras.

Chemotaxis of leptospiras was studied using a U-tube made of a commercially available straw-shaped polypropylene tube with an uneven flexible part. The U-tube was made by folding the polypropylene tube double and binding the vertical parts by a piece of tape, thus making the uneven flexible part the bottom. Semi-solid Korthof's medium was poured into the U-tube. Preliminary experiments showed that the medium containing 0.5% agar and measuring 2 cm in in length was appropriate. Leptospiras inoculated on the top of the medium of one side of the U-tube moved toward the top of the medium of the other side. The leptospiral move toward the uninoculated top was significantly faster when 6 micrograms of hemoglobin were added to the uninoculated top. Chemotaxis of leptospiras to hemoglobin was thus shown, which is the first evidence of chemotaxis of leptospiras.

Chemotaxis↗

Comparison of two PCR methods for rapid identification of Leptospira genospecies interrogans.

Based on (i) an analysis of Leptospira 16S rDNA sequences determined by us and of those from databases and (ii) a previously published finding that restriction fragment length polymorphisms (RFLPs) within the Leptospira 16S and 23S rDNA were detected by nine restriction enzymes and these RFLPs allowed categorisation of Leptospira into eight genospecies, we predicted that one particular DdeI restriction site polymorphism within 16S rDNA could be independently used for identifications of Leptospira strains belonging to the genospecies interrogans. Two PCR-based methods, namely allele-specific amplification (ASA) and PCR-RFLP, were tested for the rapid detection of the DdeI restriction site polymorphism. One or two representative strains from each of nine genospecies were tested by ASA, whereas 73 strains from nine genospecies and two field isolates were tested by PCR-RFLP. Our experiments showed that the ASA method was not as specific as intended, but the PCR-RFLP method was useful for rapid identifications of the genospecies interrogans. We have not only confirmed a previous finding and extended the number of samples particularly from the genospecies biflexa, weilii, and inadai, but also simplified a previous PCR-RFLP protocol.

DNA, Ribosomal↗

Analysis of Leptospira isolates from mainland Portugal and the Azores islands.

From 228 recent Leptospira isolates from mainland Portugal and Azorean wild mammals, 149 were characterized at the serovar level by monoclonal antibodies (MAbs), a quick serological method in epidemiological studies. In order to compare this antigenic information with that from new genetic techniques, a sample of isolates was analyzed through pulsed-field agarose gel electrophoresis (PFGE) (n=71), mapped restriction site polymorphisms (MRSPs) in PCR-amplified rRNA genes (n=45, including 13 saprophytes) and arbitrarily primed polymerase chain reaction (AP-PCR) fingerprinting (n=32). MRSP and AP-PCR lead to species identification of the studied 32 pathogenic isolates: Leptospira interrogans (n=3), Leptospira kirschneri (n=8) and Leptospira borgpetersenii (n=21). MAbs and PFGE characterized pathogenic isolates at the serovar level and resulted mainly in agreement (64%) although many discrepancies (35%) were observed.

Animals↗

A comprehensive survey on isoleucine biosynthesis pathways in seven epidemic Leptospira interrogans reference strains of China.

Previous studies have indicated that different species of Leptospira synthesize isoleucine via either pyruvate and/or threonine pathways. Seven epidemic Leptospira interrogans reference strains from China belonging to different serovars, together with three saprophytic strains of Leptospira biflexa and Leptospira meyeri, were analysed. The isoleucine biosynthesis properties were studied firstly by measuring the key enzymes of the two pathways, citramalate synthase (CimA, CE4.1.3.-) and threonine deaminase (IlvA, CE4.2.1.16), from cell extracts of the bacteria. Meanwhile, alpha-isopropylmalate synthase (LeuA, CE4.2.1.12), the key enzyme of leucine biosynthesis, was also measured as a control. It was found that all L. interrogans strains synthesized isoleucine via the pyruvate pathway exclusively, but L. biflexa and L. meyeri used both pathways. Dot-Blot and PCR amplification of both cimA and ilvA genes in the corresponding strains provided additional evidence consistent with the data of enzymatic assays. Although it is evident that leptospires' isoleucine biosynthesis may preferentially adapt either to the pyruvate pathway exclusively for pathogens or to the combination of both pyruvate and threonine pathways for saprophytes, broader sampling with careful genomospecies identification is needed for a solid conclusion.

2-Isopropylmalate Synthase↗

Efficacy of combined furazolidone and neomycin in the control of contamination in Leptospira cultures.

The in vitro effectiveness of furazolidone combined with neomycin for the control of contaminants in Leptospira cultures was investigated. Enhanced additive or synergistic bactericidal activity was apparent with the combination when it was compared with each agent used separately or when compared with 5-fluorouracil. Combined furazolidone and neomycin, at 5-mug/ml concentrations each in Fletcher medium or in implanted sensitivity disks of 50 mug and 10 mug, respectively, was effective in inhibiting contaminants and did not interfere with the growth of leptospira belonging to 66 leptospiral collection serotypes. A simple technique for decontaminating swine kidneys from an abattoir for cultural isolation of leptospiras is described. The method involves exposing renal tissue diluted in saline containing furazolidone and neomycin in combination (each in a concentration of 25 mug/ml) for 1 h prior to inoculating culture media. The method is suitable for routine use in the isolation of leptospiras from contaminated clinical or pathological specimens.

Drug Combinations↗

Invasion of Vero cells and induction of apoptosis in macrophages by pathogenic Leptospira interrogans are correlated with virulence.

Interactions of virulent Leptospira interrogans serovar icterohaemorrhagiae strain Verdun with Vero cells (African green monkey kidney fibroblasts) and a monocyte-macrophage-like cell line (J774A.1) were assayed by a double-fluorescence immunolabelling method. Infectivity profiles were investigated according to (i) the duration of contact between leptospires and eukaryotic cells and (ii) the number of in vitro passages after primary isolation from lethally infected guinea pigs. Comparative experiments were conducted with the corresponding high-passage avirulent variant and the saprophytic leptospire Leptospira biflexa Patoc I. In Vero cells, virulent leptospires were quickly internalized from 20 min postinfection, whereas avirulent and saprophytic strains remained extracellularly located. In addition, the virulent strain demonstrated an ability to actively invade the monocyte-macrophage-like J774A.1 cells during the early stages of contact and to induce programmed cell death, as shown by the detection of oligonucleosomes in a quantitative sandwich enzyme immunoassay. In both cellular systems, subsequent in vitro subcultures demonstrated a progressive decrease of the invasiveness, pointing out the necessity of using primocultures of Leptospira for virulence studies. Invasiveness of virulent leptospires was significantly inhibited with monodansylcadaverine, indicating that internalization was dependent on receptor-mediated endocytosis. Invasion of epithelial cells and induction of apoptosis in macrophages may be related to the pathogenicity of Leptospira, and both could contribute to its ability to survive in the host and to escape from the immune response.

Animals↗

Cytotoxic activities of Leptospira interrogans hemolysin SphH as a pore-forming protein on mammalian cells.

Leptospirosis is a spirochetal zoonosis that causes an acute febrile systemic illness in humans. Leptospira sp. hemolysins have been shown to be virulence factors for the pathogenesis of leptospirosis. Previously, we cloned a hemolysin SphH of Leptospira interrogans serovar lai, a homologue of L. borgpetersenii sphingomyelinase (SphA), from a genomic library (S. H. Lee, K. A. Kim, Y. K. Kim, I. W. Seong, M. J. Kim, and Y. J. Lee, Gene 254:19-28, 2000). Escherichia coli lysate harboring the sphH showed high hemolytic activities on sheep erythrocytes. However, it neither showed sphingomyelinase nor phospholipase activities, in contrast to SphA which was known to have sphingomyelinase activity. Interestingly, the SphH-mediated hemolysis on erythrocytes was osmotically protected by PEG 5000, suggesting that the SphH might have caused pore formation on the erythrocyte membrane. In the present study, we have prepared the Leptospira hemolysin SphH and investigated its hemolytic and cytotoxic activities on mammalian cells. SphH was shown to be a pore-forming protein on several mammalian cells: When treated with the SphH, the sheep erythrocyte membranes formed pores, which were morphologically confirmed by transmission electron microscopy. Furthermore, the SphH-mediated cytotoxicities on mammalian cells were demonstrated by the release of LDH and by inverted microscopic examinations. Finally, the immune serum against the full-length hemolysin could effectively neutralize the SphH-mediated hemolytic and cytotoxic activities. In conclusion, these results suggest that the virulence of Leptospira SphH was due to the pore formation on mammalian cell membranes.

Animals↗

LipL21 is a novel surface-exposed lipoprotein of pathogenic Leptospira species.

Leptospira is the etiologic agent of leptospirosis, a bacterial zoonosis distributed worldwide. Leptospiral lipopolysaccharide is a protective immunogen, but the extensive serological diversity of leptospires has inspired a search for conserved outer membrane proteins (OMPs) that may stimulate heterologous immunity. Previously, a global analysis of leptospiral OMPs (P. A. Cullen, S. J. Cordwell, D. M. Bulach, D. A. Haake, and B. Adler, Infect. Immun. 70:2311-2318, 2002) identified pL21, a novel 21-kDa protein that is the second most abundant constituent of the Leptospira interrogans serovar Lai outer membrane proteome. In this study, we identified the gene encoding pL21 and found it to encode a putative lipoprotein; accordingly, the protein was renamed LipL21. Southern hybridization analysis revealed the presence of lipL21 in all of the pathogenic species but in none of the saprophytic species examined. Alignment of the LipL21 sequence from six strains of Leptospira revealed 96 to 100% identity. When specific polyclonal antisera to recombinant LipL21 were used, LipL21 was isolated together with other known leptospiral OMPs by both Triton X-114 extraction and sucrose density gradient membrane fractionation. All nine strains of pathogenic leptospires investigated by Western blotting, whether culture attenuated or virulent, were found to express LipL21. In contrast, the expression of LipL21 or an antigenically related protein could not be detected in nonpathogenic L. biflexa. Infected hamster sera and two of eight human leptospirosis sera tested were found to react with recombinant LipL21. Native LipL21 was found to incorporate tritiated palmitic acid, consistent with the prediction of a lipoprotein signal peptidase cleavage site. Biotinylation of the leptospiral surface resulted in selective labeling of LipL21 and the previously known OMPs LipL32 and LipL41. These findings show that LipL21 is a surface-exposed, abundant outer membrane lipoprotein that is expressed during infection and conserved among pathogenic Leptospira species.

Animals↗