首页> 外文期刊>Biochimica et biophysica acta. Gene structure and expression >Molecular cloning, expression and evolution of the Japanese flounder goose-type lysozyme gene, and the lytic activity of its recombinant protein
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Molecular cloning, expression and evolution of the Japanese flounder goose-type lysozyme gene, and the lytic activity of its recombinant protein

机译:日本比目鱼鹅型溶菌酶基因的分子克隆,表达与进化及其重组蛋白的裂解活性

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In this study, we cloned the goose-type (g-type) lysozyme gene from the Japanese flounder genomic DNA library, the first such data in fish and only the second after the chicken g-type lysozyme gene. The Japanese flounder g-type lysozyme gene was 1252 bp in length from the transcription site to the polyadenylation site, coded for 758 bp of mRNA and 195 deduced amino acids, which contain five exons and four introns. A phylogenetic analysis based on amino acid sequences showed that the flounder gene was closer to g-type lysozyme, followed by phage-type lysozyme and then chicken-type (c-type) lysozyme. Although exon 1 of the flounder gene differs from exons 1 and 2 of the chicken g-type lysozyme gene, three catalytic residues, as well as their neighboring amino acids were conserved between the Japanese flounder and the four avian g-type lysozymes. In a southern blot analysis using the genomic DNA of homo-cloned Japanese flounder, the flounder g-type lysozyme gene showed a simple pattern, suggesting that it is encoded by a single copy gene. A Northern blot analysis showed that this gene was expressed in all tissues of Japanese flounder that we examined in this study and showed major differences from those expressed tissues of the chicken g-type gene. Japanese flounder g-type lysozyme mRNA levels in the intestine, heart and whole blood increased after injecting the fish with Edwardsiella tarda. Recombinant flounder g-type lysozyme, which has an optimal pH and temperature of pH 6.0 and 25 ℃, possessed lytic activity against Micrococcus lysodeikticus and several fish pathogenic bacteria. This is the first report of a g-type lysozyme gene other than for reported avian species.
机译:在这项研究中,我们从日本比目鱼基因组DNA文库中克隆了鹅型(g型)溶菌酶基因,第一个数据在鱼类中,仅第二个在鸡g型溶菌酶基因之后。日本比目鱼g型溶菌酶基因从转录位点到聚腺苷酸化位点长度为1252 bp,编码758 bp的mRNA和195个推导的氨基酸,其中包含五个外显子和四个内含子。根据氨基酸序列进行的系统发育分析表明,比目鱼基因更接近g型溶菌酶,其次是噬菌体型溶菌酶,然后是鸡型(c型)溶菌酶。尽管比目鱼基因的外显子1与鸡g型溶菌酶基因的外显子1和2不同,但是在日本比目鱼和四种禽类g型溶菌酶之间,三个催化残基以及它们的相邻氨基酸均被保守。在使用同源克隆的日本比目鱼的基因组DNA进行的Southern印迹分析中,比目鱼g型溶菌酶基因显示出简单的模式,表明它由单拷贝基因编码。 Northern印迹分析表明,该基因在我们研究的日本比目鱼的所有组织中都有表达,并且与鸡g型基因的那些表达组织有很大差异。向鱼中注入爱德华氏菌爱德华氏菌后,日本比目鱼在肠,心脏和全血中的g型溶菌酶mRNA水平增加。重组比目鱼g型溶菌酶的最适pH为pH 6.0,最适温度为25℃,对溶菌微球菌和几种鱼类致病菌具有裂解活性。这是除报告禽类以外的g型溶菌酶基因的首次报道。

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