Richier Sophie, Merle Pierre-Laurent, Furla Paola, Pigozzi Delphine, Sola François, Allemand Denis
UMR 1112 INRA-UNSA, Faculté des Sciences, Université de Nice Sophia-Antipolis, BP 71, F-06108, Cedex 02, Nice, France.
Biochim Biophys Acta. 2003 Apr 7;1621(1):84-91. doi: 10.1016/s0304-4165(03)00049-7.
Many cnidarians, such as sea anemones, contain photosynthetic symbiotic dinoflagellates called zooxanthellae. During a light/dark cycle, the intratentacular O(2) state changes in minutes from hypoxia to hyperoxia (3-fold normoxia). To understand the origin of the high tolerance to these unusual oxic conditions, we have characterized superoxide dismutases (SODs) from the three cellular compartments (ectoderm, endoderm and zooxanthellae) of the Mediterranean sea anemone Anemonia viridis. The lowest SOD activity was found in ectodermal cells while endodermal cells and zooxanthellae showed a higher SOD activity. Two, seven and six SOD activity bands were identified on native PAGE in ectoderm, endoderm and zooxanthellae, respectively. A CuZnSOD was identified in both ectodermal and endodermal tissues. MnSODs were detected in all compartments with two different subcellular localizations. One band displays a classical mitochondrial localization, the three others being extramitochondrial. FeSODs present in zooxanthellae also appeared in endodermal host tissue. The isoelectric points of all SODs were distributed between 4 and 5. For comparative study, a similar analysis was performed on the whole homogenate of a scleractinian coral Stylophora pistillata. These results are discussed in the context of tolerance to hyperoxia and to the transition from anoxia to hyperoxia.
许多刺胞动物,如海葵,都含有被称为虫黄藻的光合共生甲藻。在光/暗循环过程中,触手内的氧气状态在几分钟内从缺氧转变为高氧(正常氧含量的3倍)。为了了解对这些异常氧条件的高耐受性的起源,我们对地中海海葵绿海葵三个细胞区室(外胚层、内胚层和虫黄藻)中的超氧化物歧化酶(SOD)进行了表征。在外胚层细胞中发现的SOD活性最低,而内胚层细胞和虫黄藻显示出较高的SOD活性。在外胚层、内胚层和虫黄藻的非变性聚丙烯酰胺凝胶电泳上分别鉴定出两条、七条和六条SOD活性带。在两个外胚层和内胚层组织中都鉴定出了一种铜锌超氧化物歧化酶。在所有区室中都检测到了锰超氧化物歧化酶,其亚细胞定位有两种不同情况。一条带显示出典型的线粒体定位,另外三条位于线粒体外。虫黄藻中存在的铁超氧化物歧化酶也出现在内胚层宿主组织中。所有超氧化物歧化酶的等电点分布在4到5之间。为了进行比较研究,对石珊瑚鹿角杯形珊瑚的全匀浆进行了类似分析。这些结果在对高氧耐受性以及从缺氧到高氧转变的背景下进行了讨论。