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A Alito

Publications and source records attributed to A Alito.

28 records · Page 2Linked to original sources

An mpb-64 flanking sequence specific for Mycobacterium bovis.

A clone carrying a plasmid with the mpb-64 gene and 3' flanking sequences (plasmid pMBA122) was detected during the screening of a Mycobacterium bovis genomic library with sera from infected cattle. When the pMBA122 insert was used as a probe in Southern blots against PvuII-digested mycobacterial DNA, it distinguished the different M. tuberculosis complex species. This probe hybridized with a 7-kb band in M. tuberculosis, a 5-kb band in M. bovis and a 3-kb band in M. tuberculosis complex strains from wild seals. Smal genomic digestions enabled us to locate this polymorphic region downstream of the mpb-64 gene. In order to clone this particular region, we designed a pair of PCR primers. Unexpectedly, these primers amplified only M. bovis DNA; no amplification was seen in M. tuberculosis DNA. When the annealing temperature was lowered from 70 to 55 degrees C, an amplification product of the same size was obtained with M. tuberculosis. This product was cloned and sequenced, and showed partial homology to the M. bovis amplified fragment. Therefore, this region comprises M. bovis sequences with a lower homology with M. tuberculosis than other compared sequences. This suggests that a more precise differentiation method at the species level for the M. tuberculosis complex could be achieved using PCR directed to this region.

Animals↗

A novel 27 kDa lipoprotein antigen from Mycobacterium bovis.

A novel Mycobacterium bovis antigen was identified from an expression library using sera from naturally infected cattle. The Escherichia coli recombinant clone expressed a 27 kDa protein, named P27. A rabbit serum against the recombinant antigen recognized a protein of 27 kDa in cellular extracts from M. bovis and M. tuberculosis. No protein was recognized in the culture supernatant. Sequence analysis indicated that P27 has a molecular mass of 24 kDa, showing a characteristic signal sequence for lipoprotein modification (a signal peptidase type II site). The gene is identical to a gene identified in the M. tuberculosis genome sequencing project. Cellular fractionation experiments suggested that P27 is an integral membrane protein. The antigen was recognized by individual sera and peripheral blood mononuclear cells (PBMC) from diseased cattle. PCR experiments with specific primers directed to the P27 structural gene indicated that it is only present in the M. tuberculosis species complex. In conclusion, a novel immunogenic lipoprotein in M. bovis/M. tuberculosis has been identified. The results presented here and elsewhere suggest that mycobacterial lipoproteins should be considered in the design of new recombinant vaccines and diagnostic methods.

Amino Acid Sequence↗

Comparison of different genetic markers for molecular epidemiology of bovine tuberculosis.

In the present study three different genetic markers were used in an RFLP study to differentiate Mycobacterium bovis (M. bovis) isolated in Argentina. The markers were: the insertion sequence IS6110, the direct repeat (DR) sequence flanking IS6110, and a polymorphic GC-rich repetitive sequence (PGRS), called pMBA2. Two restriction enzymes were used, PvuII for IS6110 and DR (DR/PvuII) and AluI for DR (DR/AluI) and pMBA2. DNA from 85 of M. bovis isolates was digested with PvuII and hybridized with IS6110 and Dr. IS6110 was not useful to differentiate M. bovis because most of the isolates contain a single monomorphic copy. The use of DR allowed a limited degree of differentiation. DNA from 44 of these isolates was also digested with AluI and hybridized with DR and pMBA2. In this condition these probes differentiated the isolates in many different RFLP types. By combining the patterns generated with DR/AluI and pMBA2 it was possible to increase the differentiation up to obtain 30 different RFLP types and 54% of the isolates were differentiated because they showed a unique pattern. Six isolates of M. bovis involved in two different outbreaks of bovine tuberculosis were correctly identified. Thus, DR and pMBA2 could be, at the moment, the probes of choice for comparisons of M. bovis isolates in different regions and for epidemiological surveillance of bovine tuberculosis.

Animals↗

Multidrug resistant tuberculosis outbreak in Buenos Aires. DNA fingerprinting analysis of isolates.

In order to determine the possible relationship among HIV patients coinfected with multidrug resistant tuberculosis strains who had been receiving clinical assistance in our Hospital, clinical and epidemiological information from 28 patients was collected. DNA fingerprinting by restriction fragment length polymorphism (RFLP) pattern was performed on the mycobacterial isolates from these patients, using the restriction enzyme Pvull and IS 6110 as genetic marker. A unique RFLP pattern was found in 10 isolates from 10 different patients who had a disease caused by a single strain. Our findings confirm RFLP as a reliable and useful tool to analyze TB transmission.

Acquired Immunodeficiency Syndrome↗

Genetic characterization of mycobacteria from South American wild seals.

Tuberculosis has been recently diagnosed in four wild seals found stranded in the Atlantic coast of Argentina. By bacteriological studies and IS6110 hybridization, these isolates were characterized as belonging to the Mycobacterium tuberculosis complex. A genetic characterization using RFLP (Restriction fragment length polymorphism) and a species-specific probe of M. tuberculosis, called mtp40, showed hybridization with this probe on a single band. A similar band was also found in M. tuberculosis H37Rv. This showed a relationship between M. tuberculosis and the wild seal isolates. However these would also seem to belong to a different genetic group in the M. tuberculosis complex, since they do not grow on glycerol-egg containing medium (Lowenstein-Jensen) as typical M. tuberculosis strains usually do. Repeated sequences pMBA2, pTNB12, DR and IS6110 were used as probes to evaluate the epidemiological relationships between the 4 cases of tuberculosis. A low degree of polymorphism was observed, that suggested that these isolates were epidemiologically related.

Animals↗

Cloning of a novel polymorphic GC-rich repetitive DNA from Mycobacterium bovis.

A repetitive DNA from a wild-type Mycobacterium bovis isolate was cloned and characterized. The repeated segment was present in M. bovis and M. tuberculosis but was absent from the six other mycobacteria tested. Sequence analysis demonstrated that this repetitive element belonged to the polymorphic GC-rich repeat sequence type, a family of interspersed repeated DNA. This fragment, when used as a probe in restriction fragment length polymorphism analyses, was able to detect polymorphism in M. bovis genotypes that went undetected when the established IS6110 was used as a probe. This repetitive element should be useful in epidemiological studies of bovine tuberculosis.

Base Sequence↗

Characterization of a novel Mycobacterium bovis secreted antigen containing PGLTS repeats.

Serum from naturally infected cattle was used to identify a novel Mycobacterium bovis antigen from an expression library. The first recombinant product identified was a fusion protein with lacZ (55 kDa). A clone containing the whole gene was also obtained. This clone expressed a 38-kDa protein. A rabbit serum against the recombinant antigen reacts in M. bovis supernatants with two proteins of 36 and 34 kDa. The new protein was called P36/P34. The gene cloned has a deduced amino acid sequence with a predicted molecular mass of 28 kDa, showing a characteristic signal sequence for exportation. The protein bears partial homology to a 28-kDa protein from M. leprae. An interesting feature of the P36/P34 sequence is that it contains several PGLTS repeats, which are not present in the M. leprae protein. Antigenic determinants seem also to be conserved between the two proteins because sera from leprosy patients recognized the recombinant M. bovis protein. The discrepancy among the molecular mass deduced from the sequence (28 kDa), that of the recombinant protein in Escherichia coli (38 kDa), and that of the native protein in M. bovis (36 and 34 kDa) could be attributed to posttranslational modifications or to the high proline content that may alter the migration properties of the protein. This antigen seems to be immunodominant during bovine tuberculosis, because 8 of 9 serum specimens from diseased cattle are reactive. The homology among the M. leprae 28-kDa protein, the protein described in this article, and a recently described M. tuberculosis protein suggests the existence of a new protein family in mycobacteria.

Amino Acid Sequence↗

Use of various genetic markers in differentiation of Mycobacterium bovis strains from animals and humans and for studying epidemiology of bovine tuberculosis.

One hundred fifty-three Mycobacterium bovis strains from cattle, various animal species from zoos and wild parks, and humans were analyzed for three different genetic markers for use in the epidemiology of bovine tuberculosis. M. bovis strains isolated from cattle were found to carry a single IS6110 element, whereas the majority of strains from other animals such as antelopes, monkeys, and seals harbored multiple IS6110 elements, suggesting that the reservoirs in cattle and wild animals are separated. Because the single IS6110 element in cattle strains is located at the same chromosomal position, strain differentiation by insertion sequence fingerprinting was hampered. Therefore, we investigated the usefulness of the direct repeat and polymorphic GC-rich repeat elements for strain differentiation. Both markers allowed sufficient strain discrimination for epidemiological purposes. Evidence is presented that in Argentina, most human M. bovis infections are due to transmission from cattle, whereas M. bovis infections among humans in the Netherlands are mainly contracted from animals other than cattle. Various outbreaks of M. bovis among animals and humans are described, including a small one which likely involved transmission from human to human.

Animals↗

[The genotype of the principal Mycobacterium bovis in Argentina is also that of the British Isles: did bovine tuberculosis come from Great Britain?].

Bovine tuberculosis is a highly prevalent animal disease in Argentina. In this work evidence was obtained showing that a major Mycobacterium bovis group in Argentina had been introduced with the bovine bulls imported from the United Kingdom at the end of the XIX century. This evidence came from two sources: historical, obtained by bibliographical references, and from laboratory results, using a molecular typing method called spoligotyping. These strains are also present in other countries that introduced cattle from the same origin.

Animal Husbandry↗

First description of Mycobacterium tuberculosis Beijing genotype in Argentina.

During a population-based study to genotype isolates of Mycobacterium tuberculosis from Buenos Aires Northern suburbs, we found isolates with molecular patterns related to those of the Beijing genotype. Five out of 590 (0.85%) patients had isolates with spoligopattern identical to that of the Beijing family. Since two of these isolates showed identical IS6110RFLP pattern, we found only four different patterns containing 11 to 19 bands. The isolates were obtained from young people (including a 7 years-old child) who were born in Argentina, and were living in a small area of our region. However, conventional contact tracing did not prove epidemiological linkage among them. These isolates were fully drug-susceptible to the first-line drugs. The comparison of the IS6110RFLP patterns from our isolates against a set of 19 reference Beijing patterns from the RIVM (The Netherlands) confirmed that the strains belonged to the Beijing lineage. These findings might be partially explained by the important migration phenomena occurred during the last decade. Further surveillance studies would help in the following of Beijing family strain dissemination in our community.

Adolescent↗