Helicobacter pylori e polimorfismos em enzimas de reparo de DNA e de sÃntese de Ãxido nÃtrico no cÃncer gÃstrico / Helicobacter pylori infection and polymorphisms in DNA repair enzymes and iNOS in gastric cancer

AUTOR(ES)
FONTE

IBICT - Instituto Brasileiro de Informação em Ciência e Tecnologia

DATA DE PUBLICAÇÃO

02/08/2010

RESUMO

Gastric cancer is the most deadly malignant neoplasia worldwide, with high incidence in Brazil and Helicobacter pylori infection is a well-established risk factor. Depending on the presence of virulence genes such as cagA, cagE, vacA and virB11, H. pylori can cause differentiated inflammatory responses, with large amounts of nitric oxide (NO) generated primarily by iNOS. High amount of NO resulting in accumulation of reactive oxygen species can cause DNA oxidative damage. The genomic integrity is guaranteed by important repair enzymes as: APE-1, OGG-1 and PARP-1. Genetic polymorphisms that modify the activity of these enzymes may influence the ability to repair and therefore the host susceptibility to the development of gastric cancer H.pylori associated. Therefore, the goal of this study was to evaluate the association of the C150T polymorphism in iNOS, T2197G in APE-1, C1245G in OGG -1 and A40676G in PARP-1 with H.pylori genotype in 109 cases of patients with gastric adenocarcinoma from hospitals in Fortaleza, CearÃ. The identification of polymorphisms was performed by PCR-RFLP and the detection and genotyping of H.pylori were performed by PCR. The studied polymorphisms showed the following frequencies: iNOS 78% CC, 21.1% CT and 0.9% TT; PARP-1 69.7% AA 26.6% AG and 3.7% GG to OGG -1 56% CC, 39.4% CG and 4.6% GG and APE-1 38.5% TT, 47.7% TG and 13.8% GG. Valuable to note the low frequency of the homozygous polymorphic (TT) of iNOS and the high frequency of heterozygous (TG) from APE-1. The variant alleles of iNOS and PARP-1 were correlated with subjects ≤ 55 years, suggesting that these polymorphisms were associated with early development of the neoplasia. Intestinal tumors located in the non-antrum were correlated with heterozygous genotype of OGG-1 (CG), while diffuse, located on the body with the AA genotype of PARP-1. H. pylori was detected in 92.6% of cases. The genes cagA, cagE and virB11 were detected in 65.3%, 50.4% and 60.3% of cases respectively and vacAs1m1 was detected in 72.2%. The cases were also grouped considering the alleles of vacA and the integrity of the cag-pathogenicity island. Thus, the groups A1 and A2, consist of more pathogenic strains, were observed in 33.6% and 13.8% of patients, respectively. In the individual analysis of each enzyme, we observed that individuals carrying the variant alleles of APE-1 (TG+GG) were infected with low pathogenic strains (p=0.0422). These low pathogenic strains were also associated with patients carrying the wild genotype (AA) of PARP-1 (p=0.0396). These data were confirmed when patients infected with more virulent strains were compared to those infected with less virulent strains (p = 0.046). Analyzing only the group A1, it was also observed a correlation of APE-1 (TG) with OGG-1 (CC). When genotypes were combined by considering only the repair enzymes studied or two by two, it was found that most patients infected with the wild-type of PARP-1 were carriers of the variant allele for at least one of the enzymes and that most patients infected with less pathogenic strains possess a polymorphic allele of APE-1, independent of the genotype associated with the repair enzyme. Taken together, these data indicate the relevance of the APE-1 polymorphism in the development of gastric cancer in individuals infected with less virulent strains and corroborate the importance of the bacterial genotype, since; in general, individuals with wild-type for enzymes repair studied developed gastric cancer when infected with virulent strains.

ASSUNTO(S)

helicobacter pylori polimorfismo genÃtico gastric cancer repair enzymes, h. pylori, genetic polymorphism neoplasias gÃstricas neoplasias gÃstricas cancerologia cÃncer gÃstrico enzimas de reparo

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