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1.
BMC Microbiol ; 7: 17, 2007 Mar 12.
Artigo em Inglês | MEDLINE | ID: mdl-17352799

RESUMO

BACKGROUND: The integrity of DNA molecules is fundamental for maintaining life. The DNA repair proteins protect organisms against genetic damage, by removal of DNA lesions or helping to tolerate them. DNA repair genes are best known from the gamma-proteobacterium Escherichia coli, which is the most understood bacterial model. However, genome sequencing raises questions regarding uniformity and ubiquity of these DNA repair genes and pathways, reinforcing the need for identifying genes and proteins, which may respond to DNA damage in other bacteria. RESULTS: In this study, we employed a bioinformatic approach, to analyse and describe the open reading frames potentially related to DNA repair from the genome of the alpha-proteobacterium Caulobacter crescentus. This was performed by comparison with known DNA repair related genes found in public databases. As expected, although C. crescentus and E. coli bacteria belong to separate phylogenetic groups, many of their DNA repair genes are very similar. However, some important DNA repair genes are absent in the C. crescentus genome and other interesting functionally related gene duplications are present, which do not occur in E. coli. These include DNA ligases, exonuclease III (xthA), endonuclease III (nth), O6-methylguanine-DNA methyltransferase (ada gene), photolyase-like genes, and uracil-DNA-glycosylases. On the other hand, the genes imuA and imuB, which are involved in DNA damage induced mutagenesis, have recently been described in C. crescentus, but are absent in E. coli. Particularly interesting are the potential atypical phylogeny of one of the photolyase genes in alpha-proteobacteria, indicating an origin by horizontal transfer, and the duplication of the Ada orthologs, which have diverse structural configurations, including one that is still unique for C. crescentus. CONCLUSION: The absence and the presence of certain genes are discussed and predictions are made considering the particular aspects of the C. crescentus among other known DNA repair pathways. The observed differences enlarge what is known for DNA repair in the Bacterial world, and provide a useful framework for further experimental studies in this organism.


Assuntos
Proteínas de Bactérias/genética , Caulobacter crescentus/genética , Reparo do DNA , Genes Bacterianos , Genoma Bacteriano , Proteínas de Bactérias/metabolismo , Biologia Computacional/métodos , Reparo de Erro de Pareamento de DNA , Reparo do DNA/genética , Fases de Leitura Aberta/genética
2.
Nat Genet ; 35(2): 148-57, 2003 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-12973350

RESUMO

Schistosoma mansoni is the primary causative agent of schistosomiasis, which affects 200 million individuals in 74 countries. We generated 163,000 expressed-sequence tags (ESTs) from normalized cDNA libraries from six selected developmental stages of the parasite, resulting in 31,000 assembled sequences and 92% sampling of an estimated 14,000 gene complement. By analyzing automated Gene Ontology assignments, we provide a detailed view of important S. mansoni biological systems, including characterization of metazoa-specific and eukarya-conserved genes. Phylogenetic analysis suggests an early divergence from other metazoa. The data set provides insights into the molecular mechanisms of tissue organization, development, signaling, sexual dimorphism, host interactions and immune evasion and identifies novel proteins to be investigated as vaccine candidates and potential drug targets.


Assuntos
Schistosoma mansoni/genética , Transcrição Gênica , Animais , Mapeamento Cromossômico , Etiquetas de Sequências Expressas , Genes de Helmintos , Proteínas de Helminto/genética , Humanos , Dados de Sequência Molecular , Schistosoma mansoni/patogenicidade , Schistosoma mansoni/fisiologia , Esquistossomose mansoni/parasitologia
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