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dc.contributor.author Coelho, Millene Borges
dc.contributor.author Dalla Costa, Elis Regina
dc.contributor.author Vasconcellos, Sidra Ezídio Gonçalves
dc.contributor.author Linck, Natali Tejada
dc.contributor.author Ramos, Ricardo Martins
dc.contributor.author Amorim, Hermes Luís Neubauer de
dc.contributor.author Suffys, Philip Noel
dc.contributor.author Santos, Adalberto Rezende
dc.contributor.author Silva, Pedro Eduardo Almeida da
dc.contributor.author Soares, Daniela Fernandes Ramos
dc.contributor.author Silva, Márcia Susana Nunes
dc.contributor.author Rossetti, Maria Lucia Rosa
dc.date.accessioned 2013-10-17T00:04:11Z
dc.date.available 2013-10-17T00:04:11Z
dc.date.issued 2011
dc.identifier.citation COELHO, Millene Borges et al. Sequence and structural characterization of tbnat gene in isoniazid-resistant Mycobacterium tuberculosis: identification of new mutations. Mutation Research. Fundamental and Molecular Mechanisms of Mutagenesis, v. 712, n. 1-2, p. 33-39, 2011. Disponível em: <http://www.sciencedirect.com/science/article/pii/S0027510711000832>. Acesso em: 15 set. 2012. pt_BR
dc.identifier.uri http://repositorio.furg.br/handle/1/3998
dc.description.abstract The present study was carried out to investigate the presence of polymorphism in the N-acetyltransferase gene of 41 clinical isolates of Mycobacterium tuberculosis, that were resistant to isoniazid (INH) with no mutations in the hot spots of the genes previously described to be involved in INH resistance (katG, inhA and ahpC). We observed single nucleotide polymorphisms (SNPs) in ten of these, including the G619A SNP in five isolates and an additional four so far un-described mutations in another five isolates. Among the latter SNPs, two were synonymous (C276T, n = 1 and C375G, n = 3), while two more non-synonymous SNPs were composed of C373A (Leu→Met) and T503G (Met→Arg) were observed in respectively one and two isolates. Molecular modeling and structural analysis based in a constructed full length 3D models of wild type TBNAT (TBNAT H37Rv) and the isoforms (TBNAT L125M and TBNAT M168R) were also performed. The refined models show that, just as observed in human NATs, the carboxyl terminus extends deep within the folded enzyme, into close proximity to the buried catalytic triad. Analysis of tbnat that present non-synonymous mutations indicates that both substitutions are plausible to affect enzyme specificity or acetyl-CoA binding capacity. The results contribute to a better understanding of structure–function relationships of NATs. However, further investigation including INH-sensitive strains as a control group is needed to get better understanding of the possible role of these new mutations on tuberculosis control. pt_BR
dc.language.iso eng pt_BR
dc.rights restrict access pt_BR
dc.subject Mycobacterium tuberculosis pt_BR
dc.subject Drug resistance pt_BR
dc.subject Mutation pt_BR
dc.subject Tbnat Polymorphism pt_BR
dc.subject Structure–function pt_BR
dc.subject Molecular modeling pt_BR
dc.title Sequence and structural characterization of tbnat gene in isoniazid-resistant Mycobacterium tuberculosis: identification of new mutations pt_BR
dc.type article pt_BR


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