To find Schistosoma japonicum(S.j)new antigen gene thus provide more useful vaccine candidates, the cDNA library of S.j adult worm was screened with sera of rabbits immunized with the membrane antigens of Schistosoma ...To find Schistosoma japonicum(S.j)new antigen gene thus provide more useful vaccine candidates, the cDNA library of S.j adult worm was screened with sera of rabbits immunized with the membrane antigens of Schistosoma japonicum hepato-portal schistosomula (SjHmAg). The positive clones were amplified by PCR and sequenced, then the sequences of clones were compared with all sequences in GenBank database using Blast process. The new clones were submitted to GenBank for accession numbers. Fifteen positive clones were obtained after three rounds of immunoscreening. The size of S.j cDNA fragments in positive clones ranged from 0.7?kb-3.0?kb after automatically excised with the helper phage. Sequence analysis revealed that partial sequence of clone M5 had significant homology with S.j mitochondria mRNA, the other positive clones were new S.j genes. M2 clone sequence (GenBank accession number AF502579) was 730?bp long it had a 117?bp open reading frame (ORF). The sequence of M15 (GenBank accession number AF502582) has no transmembrane region and encodes 92 amino acids, and its protein contains a ferredoxins iron-sulfur binding region signature and two VWFC signal regions. The size of M1、M8、M9、M12(GenBank accession numbers: AF502578, AF502580, AF500622, AF502581) ranges from 402?bp to 766?bp. It concluded that the sera from rabbit immunized with SjHmAg could recognize S.j specific antigens molecules, and these antigens may induce the protective immunity against S.j infection.展开更多
To obtain short peptides simulating antigenic epitopes related to natural resistance against Schistosoma japonicum (S.j) in rats, and to explore their immune protection against S.j in mice, phage random peptide librar...To obtain short peptides simulating antigenic epitopes related to natural resistance against Schistosoma japonicum (S.j) in rats, and to explore their immune protection against S.j in mice, phage random peptide library of 12 amino acids were screened with purified IgG from normal rat sera. Positive clones that were obtained after three rounds of biopanning were detected by ELISA, and two of them were sequenced. Kunming mice were immunized with mixed phage clones. Each mouse was challenged with 40±1 S.j cercariae, and all mice were perfused 45 days post-challenge. The worms and the liver eggs were counted. The results were that the specific phages binding to IgG were enriched 300 folds after three rounds of biopanning. Twenty clones were detected by ELISA and 19 of them bound to the specific IgG of rat sera. The sequence of two clones revealed no homology with other sequences in the GenBank. Compared with the control groups, the reduction rates of the worm burden and liver egg were 33.6% and 59.8%, respectively. It was concluded that the specific peptides, which simulate antigenic molecules correlated with natural resistance to S.j in rats could be obtained by immunosceening phage random peptide library and a protective immunity against S.j can be detected by these epitopes in mice.展开更多
文摘To find Schistosoma japonicum(S.j)new antigen gene thus provide more useful vaccine candidates, the cDNA library of S.j adult worm was screened with sera of rabbits immunized with the membrane antigens of Schistosoma japonicum hepato-portal schistosomula (SjHmAg). The positive clones were amplified by PCR and sequenced, then the sequences of clones were compared with all sequences in GenBank database using Blast process. The new clones were submitted to GenBank for accession numbers. Fifteen positive clones were obtained after three rounds of immunoscreening. The size of S.j cDNA fragments in positive clones ranged from 0.7?kb-3.0?kb after automatically excised with the helper phage. Sequence analysis revealed that partial sequence of clone M5 had significant homology with S.j mitochondria mRNA, the other positive clones were new S.j genes. M2 clone sequence (GenBank accession number AF502579) was 730?bp long it had a 117?bp open reading frame (ORF). The sequence of M15 (GenBank accession number AF502582) has no transmembrane region and encodes 92 amino acids, and its protein contains a ferredoxins iron-sulfur binding region signature and two VWFC signal regions. The size of M1、M8、M9、M12(GenBank accession numbers: AF502578, AF502580, AF500622, AF502581) ranges from 402?bp to 766?bp. It concluded that the sera from rabbit immunized with SjHmAg could recognize S.j specific antigens molecules, and these antigens may induce the protective immunity against S.j infection.
基金This study was supported by grants from WHO/TDR (980255) and the Science Commission of Hunan Province (00jzy2115)
文摘To obtain short peptides simulating antigenic epitopes related to natural resistance against Schistosoma japonicum (S.j) in rats, and to explore their immune protection against S.j in mice, phage random peptide library of 12 amino acids were screened with purified IgG from normal rat sera. Positive clones that were obtained after three rounds of biopanning were detected by ELISA, and two of them were sequenced. Kunming mice were immunized with mixed phage clones. Each mouse was challenged with 40±1 S.j cercariae, and all mice were perfused 45 days post-challenge. The worms and the liver eggs were counted. The results were that the specific phages binding to IgG were enriched 300 folds after three rounds of biopanning. Twenty clones were detected by ELISA and 19 of them bound to the specific IgG of rat sera. The sequence of two clones revealed no homology with other sequences in the GenBank. Compared with the control groups, the reduction rates of the worm burden and liver egg were 33.6% and 59.8%, respectively. It was concluded that the specific peptides, which simulate antigenic molecules correlated with natural resistance to S.j in rats could be obtained by immunosceening phage random peptide library and a protective immunity against S.j can be detected by these epitopes in mice.