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Morpholino 寡核苷酸敲低细胞外钙敏感受体可损害斑马鱼早期骨骼发育。

Morpholino oligonucleotide knockdown of the extracellular calcium-sensing receptor impairs early skeletal development in zebrafish.

机构信息

Department of Biological Sciences, University at Buffalo, Buffalo, NY 14260-1300, USA.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2013 Nov;166(3):470-81. doi: 10.1016/j.cbpa.2013.07.027. Epub 2013 Aug 1.

Abstract

The complex vertebrate skeleton depends on regulated cell activities to lay down protein matrix and mineral components of bone. As a distinctive vertebrate characteristic, bone is a storage site for physiologically-important calcium ion. The extracellular calcium-sensing receptor (CaSR) is linked to homeostatic regulation of calcium through its expression in endocrine glands that secrete calcium homeostatic hormones, in Ca(2+)- and ion-transporting epithelia, and in skeleton. Since CaSR is restricted in its presence to the chordate-vertebrate evolutionary lineage, we propose there to be important functional ties between CaSRs and vertebrate skeleton in the context of that group's characteristic form of calcium-mineralized skeleton. Since little is known about CaSR in the skeletal biology of non-mammalian vertebrates, reverse transcription-polymerase chain reaction (RT-PCR), in situ hybridization and immunohistochemistry were applied to adult and embryonic zebrafish to reveal CaSR transcript and protein expression in several tissues, including, among these, chondrocytes and developing bone and notochord as components in skeletal development. Morpholino oligonucleotide (MO) knockdown technique was used to probe CaSR role(s) in the zebrafish model system. By RT-PCR assessment, injection of a splice-inhibiting CaSR MO reduced normally-spliced Casr gene transcript expression measured at 2days postfertilization (dpf). Corresponding to the knockdown of normally-spliced mRNA by the CaSR MO, we observed a morphant phenotype characterized by stunted growth and disorganization of the notochord and axial skeleton by 1dpf. We conclude that, like its critically important role in normal bone development in mammals, CaSR is essential in skeletogenesis in fishes.

摘要

脊椎动物的复杂骨骼依赖于受调控的细胞活动来沉积骨的蛋白质基质和矿物质成分。作为一种独特的脊椎动物特征,骨骼是生理上重要的钙离子储存库。细胞外钙敏感受体(CaSR)通过在分泌钙稳态激素的内分泌腺、Ca(2+)和离子转运上皮以及骨骼中表达,与钙的稳态调节相关。由于 CaSR 仅存在于脊索动物-脊椎动物进化谱系中,因此我们提出在该群体特征性的钙矿化骨骼的背景下,CaSR 与脊椎动物骨骼之间存在重要的功能联系。由于关于非哺乳动物脊椎动物骨骼中的 CaSR 知之甚少,因此应用逆转录-聚合酶链反应(RT-PCR)、原位杂交和免疫组织化学技术来揭示 CaSR 转录本和蛋白在包括软骨细胞和正在发育的骨骼和脊索在内的几种组织中的表达,这些组织是骨骼发育的组成部分。使用 morpholino 寡核苷酸(MO)敲低技术来研究 CaSR 在斑马鱼模型系统中的作用。通过 RT-PCR 评估,注射一种剪接抑制的 CaSR MO 会降低正常剪接的 Casr 基因转录本的表达,在受精后 2 天(dpf)测量。与 CaSR MO 对正常剪接 mRNA 的敲低相对应,我们观察到一种畸形表型,其特征是在 1 dpf 时生长迟缓,脊索和轴向骨骼紊乱。我们得出结论,CaSR 像其在哺乳动物正常骨骼发育中具有重要作用一样,在鱼类的骨骼发生中也是必不可少的。

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