Terwilliger Nora B, Ryan Margaret C
Oregon Institute of Marine Biology, University of Oregon, PO Box 5389, Charleston, 97420, USA.
Biol Bull. 2006 Feb;210(1):38-50. doi: 10.2307/4134535.
Arthropod phenoloxidases catalyze the melanization and sclerotization of the new postmolt exoskeleton, and they function in the immune response. Hemocyanin, phylogenetically related to phenoloxidase, can function as a phenoloxidase under certain conditions. We investigated the relative contributions of hemocyte phenoloxidase and hemocyanin in the brachyuran crab Cancer magister, using the physiological ratio at which they occur in the hemolymph, and found that hemocyte phenoloxidase has higher activity. They both convert diphenols to o-quinones, but only the hemocyte phenoloxidase is able to catalyze the conversion of monophenols to diphenols. The quaternary structure of hemocyanin affects its reactivity as phenoloxidase. We suggest that prophenoloxidase is released from hemocytes and moves across epidermis into new exoskeleton during premolt and is activated in early postmolt. In addition to functional studies, we have determined the complete cDNA sequence of C. magister hemocyte prophenoloxidase and partial sequences from the branchiopods Artemia franciscana and Triops longicaudatus. We also sequenced C. magister cryptocyanin 2 and a hemocyanin from the amphipod Cyamus scammoni and used these and other members of the arthropod hemocyanin superfamily for phylogenetic analyses. The phylogenies presented here are consistent with the possibility that a common ancestral molecule had both phenoloxidase and reversible oxygen-binding capabilities.
节肢动物酚氧化酶催化新蜕皮后外骨骼的黑化和硬化,并在免疫反应中发挥作用。血蓝蛋白在系统发育上与酚氧化酶相关,在某些条件下可作为酚氧化酶发挥作用。我们利用它们在血淋巴中出现的生理比例,研究了血细胞酚氧化酶和血蓝蛋白在短尾蟹首长黄道蟹中的相对贡献,发现血细胞酚氧化酶具有更高的活性。它们都能将二酚转化为邻醌,但只有血细胞酚氧化酶能够催化单酚向二酚的转化。血蓝蛋白的四级结构影响其作为酚氧化酶的反应活性。我们认为,酚氧化酶原在蜕皮前从血细胞中释放出来,穿过表皮进入新的外骨骼,并在蜕皮后早期被激活。除了功能研究外,我们还确定了首长黄道蟹血细胞酚氧化酶原的完整cDNA序列以及鳃足动物卤虫和长腹水蚤的部分序列。我们还对首长黄道蟹隐血蓝蛋白2和来自双壳纲的斯氏鲸虱的一种血蓝蛋白进行了测序,并将这些序列以及节肢动物血蓝蛋白超家族的其他成员用于系统发育分析。这里呈现的系统发育与一个共同的祖先分子同时具有酚氧化酶和可逆氧结合能力的可能性是一致的。