Aizawa Youichi, Nogawa Nami, Kosaka Nobuyoshi, Maeda Yasutaka, Watanabe Takafumi, Miyazaki Hiroshi, Kato Takashi
Major in Integrative Bioscience and Biomedical Engineering, Graduate School of Science and Engineering, and Department of Biology, School of Education, Waseda University, Shinjuku-ku, Tokyo.
J Biochem. 2005 Aug;138(2):167-75. doi: 10.1093/jb/mvi113.
The regulation of hematopoiesis in non-mammalian vertebrates is poorly understood. This is partly because the structures and effects of most hematopoietic regulators have not been identified. As a first step towards studies on the key mechanism of hematopoietic regulation among phyla as well as the diversity of organisms, we have focused on amphibian hematopoiesis. A cDNA sharing the highest degree of homology with mammalian erythropoietin (EPO) receptors, tentatively named xlEPOR, was cloned from a cDNA library of Xenopus laevis immature erythrocytes. The comparative identities of the deduced entire amino acid sequence to mammalian EPO receptors were quite low, although functional domains indispensable for erythropoietic activities were found in the molecule. Northern analysis revealed that xlEPOR were expressed in peripheral blood cells. In the peripheral blood of phenylhydrazine-treated adult Xenopus, immature erythrocytes expressing xlEPOR were identified by in situ hybridization and immunostaining with polyclonal antibodies to xlEPOR. To confirm the biological functions of this molecule, the extracellular domain of xlEPOR (i.e., soluble xlEPOR) was administered to adult Xenopus by consecutive intracardiac injection. The peripheral erythrocyte counts were decreased gradually; meanwhile, immature erythrocytes appeared in the circulation, demonstrating that xlEPOR plays a significant physiological role in erythropoiesis in Xenopus laevis.
非哺乳动物脊椎动物造血作用的调控机制目前还知之甚少。部分原因是大多数造血调节因子的结构和作用尚未明确。作为研究不同门类生物造血调控关键机制以及生物多样性的第一步,我们聚焦于两栖动物的造血作用。从非洲爪蟾未成熟红细胞的cDNA文库中克隆出了一个与哺乳动物促红细胞生成素(EPO)受体具有最高同源性的cDNA,暂命名为xlEPOR。尽管在该分子中发现了对红细胞生成活动不可或缺的功能域,但推导的整个氨基酸序列与哺乳动物EPO受体的比较同源性相当低。Northern分析显示xlEPOR在外周血细胞中表达。在用苯肼处理的成年非洲爪蟾外周血中,通过原位杂交和用抗xlEPOR多克隆抗体进行免疫染色,鉴定出了表达xlEPOR的未成熟红细胞。为了证实该分子的生物学功能,通过连续心内注射将xlEPOR的胞外域(即可溶性xlEPOR)给予成年非洲爪蟾。外周红细胞计数逐渐下降;与此同时,循环中出现了未成熟红细胞,表明xlEPOR在非洲爪蟾的红细胞生成中发挥着重要的生理作用。