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Ontogeny of crustacean respiratory proteins

机译:甲壳类呼吸蛋白的个体发育

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SYNOPSIS.The respiratory proteins hemoglobin and hemocyanin share the function of oxygen transport, but the proteins belong to separate gene families, and their active sites and the metal ions that bind the oxygen differ. Either hemoglobin or hemocyanin, but not both, is expressed in the hemolymph of many arthropod crustaceans. Hemoglobin is present in Branchiopoda, Ostracoda, Copepoda, rhizocephalan Cirripedia and one suborder of amphipodan Malacostraca, while hemocyanin has been described in Malacostraca. Recent work by several laboratories have provided new information on the gene structure, exon-intron patterns, site of synthesis and expression of hemoglobins in the branchiopods Artemia and Daphnia. These studies suggest the branchiopods are excellent model organisms for studies of oxygen sensors and hypoxia inducible transcription factors during developmental and adult stages. The focus in our laboratory on the ontogeny of hemocyanin in the Dungeness crab, Cancer magister, has demonstrated that both structure and function of hemocyanin change from megalopa to adult crab. The hemocyanin of an oceanic megalopa contains four subunits. Another subunit appears about the time of metamorphosis to first juvenile instar, and expression of a sixth subunit begins four or five molts later. The timing of onset of adult hemocyanin can be altered experimentally by food levels and temperature. Gene expression and functional properties of both red and blue oxygen transport proteins of crustaceans change during ontogeny to insure oxygen delivery appropriate for each developmental stage.
机译:简介:呼吸蛋白血红蛋白和血蓝蛋白具有氧转运的功能,但这些蛋白属于不同的基因家族,其活性位点和结合氧的金属离子不同。在许多节肢动物甲壳类动物的血淋巴中都表达了血红蛋白或血蓝蛋白,但不是两者都表达。血红蛋白存在于Branchiopoda,Ostracoda,Copepoda,rhizocephalan Cirripedia和两栖动物Malacostraca的一个亚纲中,而血色素则存在于Malacostraca中。几个实验室的最新工作提供了有关在亚足类卤虫和水蚤中的基因结构,外显子-内含子模式,血红蛋白合成和表达的新信息。这些研究表明,支足类动物是发育和成年阶段研究氧传感器和缺氧诱导转录因子的优良模式生物。在我们的实验室中,癌症巨蟹座的Dungeness螃蟹中血蓝蛋白的发生机理的研究重点表明,血蓝蛋白的结构和功能都从半生不成变为成年螃蟹。海洋黑加仑的血蓝蛋白包含四个亚基。大约在蜕变到第一龄幼虫时出现了另一个亚基,而第六个亚基的表达则在四个或五个蜕皮后开始。成人血蓝蛋白的发作时间可以通过食物水平和温度进行实验性改变。甲壳动物的红色和蓝色氧气转运蛋白的基因表达和功能特性在个体发育过程中发生变化,以确保适合每个发育阶段的氧气输送。

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