Dash Bhagirathi, Metz Richard, Huebner Henry J, Porter Weston, Phillips Timothy D
Faculty of Toxicology, Department of Veterinary Integrative Biosciences, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, TX 77843, USA.
Gene. 2007 Jan 31;387(1-2):93-108. doi: 10.1016/j.gene.2006.08.020. Epub 2006 Sep 12.
Apparent full-length cDNA sequences coding for manganese superoxide dismutase (HvMnSOD) and extracellular superoxide dismutase (HvEC-SOD) were isolated from Hydra vulgaris in order to understand their expression and 3D structures; and explore their possibility of being used as for biomarkers for environmental stress and toxicity. The deduced HvMnSOD protein consists of 219 amino acids of which first 21 amino acids constitute a presumed mitochondria-targeting signal peptide whereas HvEC-SOD protein consists of 189 amino acids of which first 19 amino acids constitute a presumed signal peptide. Molecular model generated for HvMnSOD displayed the N-terminal long alpha antiparallel hairpin and the C-terminal mixed alpha/beta fold characteristic of MnSODs and that for HvEC-SOD displayed the characteristic CuZnSOD â-barrel fold. Hydrae subjected to thermal, starvation, metal and oxidative stress responded by regulating MnSOD and EC-SOD mRNA transcription. These results indicated that these genes are involved in the cellular stress response and (anti)oxidative processes triggered by stressor and contaminant exposure. Hence the expression of these SODs in hydra may have potential as molecular biomarkers for assessing stress, toxicity and pro-oxidant quality of chemicals and aquatic environmental quality.
为了了解锰超氧化物歧化酶(HvMnSOD)和细胞外超氧化物歧化酶(HvEC-SOD)的表达情况和三维结构,并探索它们作为环境应激和毒性生物标志物的可能性,从普通水螅中分离出了编码这两种酶的全长cDNA序列。推导的HvMnSOD蛋白由219个氨基酸组成,其中前21个氨基酸构成一个假定的线粒体靶向信号肽,而HvEC-SOD蛋白由189个氨基酸组成,其中前19个氨基酸构成一个假定的信号肽。为HvMnSOD生成的分子模型显示出MnSOD特有的N端长α反平行发夹结构和C端混合α/β折叠结构,而HvEC-SOD的分子模型则显示出典型的CuZnSODβ桶状折叠结构。受到热、饥饿、金属和氧化应激的水螅通过调节MnSOD和EC-SOD mRNA转录做出反应。这些结果表明,这些基因参与了由应激源和污染物暴露引发的细胞应激反应和(抗)氧化过程。因此,水螅中这些超氧化物歧化酶的表达可能具有作为分子生物标志物的潜力,用于评估化学物质的应激、毒性和促氧化性质以及水生环境质量。