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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Molecular cloning and localization of a PMCA P-type calcium ATPase from the coral Stylophora pistillata
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Molecular cloning and localization of a PMCA P-type calcium ATPase from the coral Stylophora pistillata

机译:珊瑚Stylophora pistillata的PMCA P型钙ATP酶的分子克隆和定位

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摘要

Plasma-membrane calcium pumps (PMCAs) are responsible for the expulsion of Ca~(2+) from the cytosol of all eukaryotic cells and are one of the major transport systems involved in long-term regulation of resting intracellular Ca~(2+) concentration. An important feature of stony corals, one of the major groups of calcifying animals, is the continuous export of large quantities of Ca~(2+) for skeletogenesis. Here, we report the cloning and functional expression of the stpPMCA gene from the coral Stylophora pistillata, and whose features resemble those of the plasma-membrane Ca~(2+)-ATPase family of mammalian cells. This is the first known example of a Ca~(2+)-ATPase from the phylum Cnidaria, and thus, the most phylogenetically distant PMCA sequence in the animal kingdom described to date. We demonstrate that the localization of stpPMCA within calicoblastic cells is fully coherent with its role in calcification. We also show that the coral Ca~(2+) pump is more closely related to vertebrate PMCAs than to Caenorhabditis elegans PMCAs. The cloning of evolutionarily conserved genes from cnidarian species repeatedly shows that these genes encode similar functional domains. Moreover, this high level of gene conservation further validates the use of cnidarian model systems for studying processes shared by Eumetazoans.
机译:血浆膜钙泵(PMCA)负责从所有真核细胞的细胞质中排出Ca〜(2+),并且是长期调节静止细胞内Ca〜(2+)的主要运输系统之一。浓度。作为钙化动物的主要群体之一,石质珊瑚的一个重要特征是为骨骼生成而持续输出大量的Ca〜(2+)。在这里,我们报道了来自珊瑚Stylophora pistillata的stpPMCA基因的克隆和功能表达,其特征类似于哺乳动物细胞的血浆膜Ca〜(2 +)-ATPase家族。这是来自猪C门的Ca〜(2 +)-ATPase的第一个已知实例,因此是迄今为止描述的动物界中最亲近系统的PMCA序列。我们证明,stpPMCA在成釉细胞内的定位与其在钙化中的作用完全一致。我们还表明,珊瑚Ca〜(2+)泵与脊椎动物PMCA的关系比与秀丽隐杆线虫PMCA的关系更紧密。从cnidarian物种进化保守基因的克隆反复表明,这些基因编码相似的功能域。而且,这种高水平的基因保守性进一步验证了刺胞动物模型系统在研究Eumetazoans共享过程中的应用。

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