Kumaresan Venkatesh, Gnanam Annie J, Pasupuleti Mukesh, Arasu Mariadhas Valan, Al-Dhabi Naif Abdullah, Harikrishnan Ramasamy, Arockiaraj Jesu
Division of Fisheries Biotechnology & Molecular Biology, Department of Biotechnology, Faculty of Science and Humanities, SRM University, Kattankulathur, 603 203, Chennai, Tamil Nadu, India.
Institute for Cellular and Molecular Biology, The University of Texas at Austin, 1 University Station A4800, Austin, TX 78712, USA.
Gene. 2015 Jun 10;564(1):53-62. doi: 10.1016/j.gene.2015.03.042. Epub 2015 Mar 21.
Cu/ZnSOD (copper/zinc superoxide dismutase) primarily scavenges cytosolic reactive oxygen species (ROS) by converting ROS to hydrogen peroxide, which is then converted to water by the catalytic action of catalase, thus playing a pivotal role in the first line of defense mechanism against oxidative stress. In this study, we have reported a complete molecular characterization of cDNA sequence from striped murrel Channa striatus (Cs). Cellular location prediction reveals that CsCu/ZnSOD protein is cytosolic with an accuracy of 90%. Phylogenetic analysis showed that CsCu/ZnSOD belongs to SOD1 group and it shared a common clad with Asian seabass Lates calcarifer and then with other fishes. The highest CsCu/ZnSOD gene expression, SOD enzyme activity and total protein concentration were observed in the liver and its regulation was studied upon fungus (Aphanomyces invadans) and bacterial (Aeromonas hydrophila) challenges. Based on the results obtained from the above analysis, we concluded a correlation of gene expression-enzyme activity-protein concentration. Overall, the findings demonstrated that the CsCu/ZnSOD plays a critical role in the antioxidant system especially in the liver during oxidative stress caused by fungus and bacteria.
铜锌超氧化物歧化酶(Cu/ZnSOD)主要通过将活性氧(ROS)转化为过氧化氢来清除胞质中的活性氧,然后过氧化氢在过氧化氢酶的催化作用下转化为水,因此在抵御氧化应激的第一道防线中发挥着关键作用。在本研究中,我们报道了条纹鳢(Channa striatus,Cs)cDNA序列的完整分子特征。细胞定位预测显示,CsCu/ZnSOD蛋白定位于胞质,准确率为90%。系统发育分析表明,CsCu/ZnSOD属于SOD1组,它与尖吻鲈(Lates calcarifer)共有一个分支,然后与其他鱼类共有一个分支。在肝脏中观察到最高的CsCu/ZnSOD基因表达、SOD酶活性和总蛋白浓度,并研究了在真菌(入侵丝囊霉)和细菌(嗜水气单胞菌)攻击下其调节情况。基于上述分析结果,我们得出了基因表达-酶活性-蛋白浓度之间的相关性。总体而言,研究结果表明,CsCu/ZnSOD在抗氧化系统中起着关键作用,尤其是在真菌和细菌引起的氧化应激期间的肝脏中。