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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Involvement of calcitonin and its receptor in the control of calcium-regulating genes and calcium homeostasis in zebrafish (Danio rerio).
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Involvement of calcitonin and its receptor in the control of calcium-regulating genes and calcium homeostasis in zebrafish (Danio rerio).

机译:降钙素及其受体参与斑马鱼(Danio rerio)的钙调节基因和钙稳态的控制。

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Calcitonin (CT) is one of the hormones involved in vertebrate calcium regulation. It has been proposed to act as a hypocalcemic factor, but the regulatory pathways remain to be clarified. We investigated the CT/calcitonin gene-related peptide (CGRP) family in zebrafish and its potential involvement in calcium homeostasis. We identified the presence of four receptors: CTR, CRLR1, CRLR2, and CRLR3. From the phylogenetic analysis, together with the effect observed after CT and CGRP overexpression, we concluded that CTR appears to be a CT receptor and CRLR1 a CGRP receptor. The distribution of these two receptors shows a major presence in the central nervous system and in tissues involved in ionoregulation. Zebrafish embryos kept in high-Ca(2+)-concentration medium showed upregulation of CT and CTR expression and downregulation of the epithelial calcium channel (ECaC). Embryos injected with CT morpholino (CALC MO) incubated in high-Ca(2+) medium, showed downregulation of CTR together with upregulation on ECaC mRNA expression. In contrast, overexpression of CT cRNA induced the downregulation of ECaC mRNA synthesis, concomitant with the downregulation in the calcium content after 30 hours postfertilization. At 4 days postfertilization, CT cRNA injection induced upregulation of hypercalcemic factors, with subsequent increase in the calcium content. These results suggest that CT acts as a hypocalcemic factor in calcium regulation, probably through inhibition of ECaC synthesis.
机译:降钙素(CT)是参与脊椎动物钙调节的激素之一。已经有人提出将其作为降血钙因子,但其调节途径尚待阐明。我们调查了斑马鱼的CT /降钙素基因相关肽(CGRP)家族及其潜在的钙稳态。我们确定了四个受体的存在:CTR,CRLR1,CRLR2和CRLR3。从系统发育分析以及CT和CGRP过表达后观察到的影响,我们得出结论,CTR似乎是CT受体,CRLR1似乎是CGRP受体。这两种受体的分布在中枢神经系统和参与电离调节的组织中显示出主要存在。保持在高Ca(2+)浓度培养基中的斑马鱼胚胎显示CT和CTR表达的上调以及上皮钙通道(ECaC)的下调。在高Ca(2+)培养基中孵育的CT吗啉代(CALC MO)注射的胚胎显示CTR的下调以及ECaC mRNA表达的上调。相反,CT cRNA的过表达诱导ECaC mRNA合成的下调,与受精后30小时后钙含量的下调同时发生。受精后第4天,CT cRNA注射诱导高钙血症因子的上调,随后钙含量增加。这些结果表明,CT可能通过抑制ECaC合成而成为钙调节过程中的低血钙因子。

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