Hecker Arnaud, Quennedey Brigitte, Testenière Olivier, Quennedey André, Graf François, Luquet Gilles
UMR CNRS 5548, Développement--Communication Chimique, Université de Bourgogne, 6 Boulevard Gabriel, F-21000 Dijon, France.
J Struct Biol. 2004 Jun;146(3):310-24. doi: 10.1016/j.jsb.2004.01.009.
Orchestia cavimana is a crustacean that cyclically replaces its calcified cuticle during molting cycles in order to grow. Its terrestrial way of life requires storage of calcium during each premolt period, as calcareous concretions, in tubular diverticula of the midgut. During the postmolt period the stored calcium is reabsorbed and is translocated through the storage organ epithelium as calcified small spherules. In a previous study, we sequenced and characterized a remarkable component of the organic matrix of the premolt storage structures, Orchestin, which is a calcium-binding phosphoprotein. In this paper, we analyzed the spatiotemporal expression of the orchestin gene by Northern blotting and in situ hybridization, and its translated product by immunocytochemistry. We found evidence that the gene and the protein are expressed specifically during premolt in the storage organs. More interestingly, we demonstrated that the protein is synthesized also during the postmolt period, as a component of the organic matrix of the calcium resorption spherules. Thus, Orchestin is a matrix component that is synthesized by the same cells to contribute alternately to the elaboration of two different calcifications. These results, in addition to the physical and chemical features of the protein, suggest that Orchestin is probably a key molecule in the calcium carbonate precipitation process leading to the cyclic elaboration of two transitory calcified mineralizations by the crustacean Orchestia.
海蟑螂是一种甲壳类动物,在蜕皮周期中会周期性地替换其钙化表皮以实现生长。其陆地生活方式要求在每次蜕皮前期将钙作为钙质凝块储存在中肠的管状憩室中。在蜕皮后期,储存的钙被重新吸收,并以钙化小球的形式通过储存器官上皮细胞转运。在之前的一项研究中,我们对蜕皮前储存结构的有机基质的一个显著成分——海蟑螂蛋白进行了测序和表征,它是一种钙结合磷蛋白。在本文中,我们通过Northern印迹法和原位杂交分析了海蟑螂蛋白基因的时空表达,并通过免疫细胞化学分析了其翻译产物。我们发现该基因和蛋白质在蜕皮前的储存器官中特异性表达。更有趣的是,我们证明该蛋白质在蜕皮后期也作为钙吸收小球有机基质的一个成分被合成。因此,海蟑螂蛋白是由相同细胞合成的一种基质成分,交替地参与两种不同钙化的形成。这些结果,除了该蛋白质的物理和化学特性外,表明海蟑螂蛋白可能是导致甲壳类动物海蟑螂周期性形成两种暂时性钙化矿化的碳酸钙沉淀过程中的关键分子。