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首页> 外文期刊>Fish & Shellfish Immunology >Molecular characterization of a manganese superoxide dismutase and copper/zinc superoxide dismutase from the mussel Mytilus galloprovincialis
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Molecular characterization of a manganese superoxide dismutase and copper/zinc superoxide dismutase from the mussel Mytilus galloprovincialis

机译:贻贝Mytilus galloprovincialis的锰超氧化物歧化酶和铜/锌超氧化物歧化酶的分子表征

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The full-length cDNA sequences coding respectively for a manganese superoxide dismutase (Mg -MnSOD) and copper/zinc superoxide dismutase (Mg-CuZnSOD) were cloned from Mytilus galloprovincialis. Mg-MnSOD and Mg-CuZnSOD cDNAs encoded a polypeptide of 228 and 211 amino acids, respectively. Sequence analysis indicated Mg-MnSOD was a mitochondrial MnSOD and Mg-CuZnSOD was an intracellular CuZnSOD. Multiple alignment analysis showed that both Mg-MnSOD and Mg -CuZnSOD sequences had the common features conserved in MnSODs and CuZnSODs, respectively. Phylogenetic analysis revealed that Mg—MnSOD clustered together with MnSODs from other mollusks, whereas Mg—CuZnSOD clustered with other mollusk intracellular CuZnSODs with a wider phylogenetic distance. By quantitative real-time RT-PCR (qPCR) analysis, both Mg-MnSOD and Mg-CuZnSOD transcripts were detected in all tissues examined with the highest expression level in hepatopancreas. Following bacterial challenge, the expression level of Mg-MnSOD and Mg—CuZnSOD increased first and subsequently decreased to the original level in hemocytes. In hepatopancreas, Mg-CuZnSOD mRNA was up-regulated significantly at 72 h and 96 h post challenge, while the level of Mg-MnSOD transcript had no significant change. Therefore, Mg-MnSOD and Mg—CuZnSOD expressions were inducible and they were probably involved in the immune response against bacterial challenge. These results suggest that these SODs may play important roles in the immune defense system of M. galloprovincialis and perhaps contribute to the protective effects against oxidative stress in this mussel.
机译:从Mytilus galloprovincialis克隆了分别编码锰超氧化物歧化酶(Mg-MnSOD)和铜/锌超氧化物歧化酶(Mg-CuZnSOD)的全长cDNA序列。 Mg-MnSOD和Mg-CuZnSOD cDNA分别编码228和211个氨基酸的多肽。序列分析表明,Mg-MnSOD是线粒体MnSOD,Mg-CuZnSOD是细胞内CuZnSOD。多重比对分析表明,Mg-MnSOD和Mg-CuZnSOD序列均具有MnSODs和CuZnSODs保守的共同特征。系统发育分析表明,Mg-MnSOD与其他软体动物的MnSOD聚集在一起,而Mg-CuZnSOD与其他软体动物的细胞内CuZnSOD聚集在一起,具有较宽的系统发育距离。通过定量实时RT-PCR(qPCR)分析,在所检查的肝胰腺中表达水平最高的所有组织中均检测到了Mg-MnSOD和Mg-CuZnSOD转录本。细菌攻击后,血细胞中Mg-MnSOD和Mg-CuZnSOD的表达水平先升高,然后降低至原始水平。在肝胰腺中,Mg-CuZnSOD mRNA在攻击后72小时和96小时显着上调,而Mg-MnSOD转录本的水平没有显着变化。因此,Mg-MnSOD和Mg-CuZnSOD表达是可诱导的,它们可能参与了针对细菌攻击的免疫反应。这些结果表明,这些SODs可能在加洛斯分枝杆菌的免疫防御系统中起重要作用,并可能有助于抵抗贻贝中氧化应激的保护作用。

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