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A Membrane-bound Hemoglobin from Gills of the Green Shore Crab Carcinus maenas

机译:来自Green Shore Crab Carcinus Maenas的鳃的膜结合的血红蛋白

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Most hemoglobins serve for the transport or storage of O2. Although hemoglobins are widespread in “entomostracan” Crustacea, malacostracans harbor the copper-containing hemocyanin in their hemolymph. Usually, only one type of respiratory protein occurs within a single species. Here, we report the identification of a hemoglobin of the shore crab Carcinus maenas (Malacostraca, Brachyura). In contrast to the dodecameric hemocyanin of this species, C. maenas hemoglobin does not reside in the hemolymph but is restricted to the gills. Immunofluorescence studies and cell fractioning showed that C. maenas hemoglobin resides in the membrane of the chief cells of the gill. To the best of our knowledge, this is the first time that a membrane-bound hemoglobin has been identified in eukaryotes. Bioinformatic evaluation suggests that C. maenas hemoglobin is anchored in the membrane by N-myristoylation. Recombinant C. maenas hemoglobin has a hexacoordinate binding scheme at the Fe2+ and an oxygen affinity of P50 = 0.5 Torr. A rapid autoxidation rate precludes a function as oxygen carrier. We rather speculate that, analogous to prokaryotic membrane-globins, C. maenas hemoglobin carries out enzymatic functions to protect the lipids in cell membrane from reactive oxygen species. Sequence comparisons and phylogenetic studies suggested that the ancestral arthropod hemoglobin was most likely an N-myristoylated protein that did not have an O2 supply function. True respiratory hemoglobins of arthropods, however, evolved independently in chironomid midges and branchiopod crustaceans.
机译:大多数血红蛋白用于运输或储存O2。虽然血红蛋白在“Entomostracan”甲壳包中普遍存在,但Malacostracans在血淋巴中含有含铜的血红蛋白。通常,在单个物种中只发生一种类型的呼吸蛋白质。在这里,我们报告鉴定肖勒蟹癌Maenas(Malacostraca,Brachyura)的血红蛋白的鉴定。与这种物种的十二次血红蛋白相比,C. maenas血红蛋白不存在于血淋巴中,但仅限于鳃。免疫荧光研究和细胞分馏显示,C. maenas血红蛋白位于鳃的主要细胞的膜中。据我们所知,这是第一次在真核生物中鉴定了膜结合的血红蛋白。生物信息化评价表明,M. maenas血红蛋白通过n-myristoylation锚定在膜中。重组C. maenas血红蛋白在Fe2 +上具有六坐标粘合方案,并且P50 = 0.5托的氧亲和力。快速自动氧化速率妨碍了氧气载体的功能。我们宁愿推测,类似于原核膜 - 珠素,C. maenas血红蛋白进行酶活性以保护细胞膜中的脂质免受反应性氧。序列比较和系统发育研究表明,祖先节肢动物血红蛋白最有可能没有o2供给功能的n-myr核糖蛋白。然而,节肢动物的真正呼吸道血红蛋白在依湿式内的甲壳类动物中独立进化。

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