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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 >Bone morphogenetic protein regulation of forkhead/winged helix transcription factor Foxc2 (Mfh1) in a murine mesodermal cell line C1 and in skeletal precursor cells.
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Bone morphogenetic protein regulation of forkhead/winged helix transcription factor Foxc2 (Mfh1) in a murine mesodermal cell line C1 and in skeletal precursor cells.

机译:小鼠中胚层细胞系C1和骨骼前体细胞中前叉/翅螺旋转录因子Foxc2(Mfh1)的骨形态发生蛋白调控。

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摘要

Mfh1/Foxc2 is a member of forkhead/winged helix transcription factor family in which its members serve as key regulators in embryogenesis and cell differentiation in various species. Mutant mice null for Mfh1 show defects in axial and cranial skeletogenesis, suggesting requirement of Mfh1 for skeletal tissue development. However, the roles of Mfh1 and its regulation during early skeletogenesis have not been understood fully yet. In this study, we investigated developmental regulation of Mfh1 expression during embryonic skeletogenesis in vivo and in vitro chondrogenic cell differentiation using a mesodermal progenitor-like cell line C1. We first examined expression patterns of Mfh1 in relation to the cartilage phenotype-related molecules including bone morphogenetic proteins (BMPs) during mouse embryogenesis by in situ hybridization. In 10.5 days postcoitum (dpc) mouse limb, Mfh1 messenger RNA (mRNA) was expressed in the mesenchymal cells in the tissues that later give rise to skeleton. In 11.5 dpc embryos, Mfh1 transcripts were expressed in the cell condensation of skeletal blastemas. BMP2 transcripts were expressed in the cell condensation proximal to the Mfh1-expressing cells in the limbs and those of BMP-7 were expressed in the mesenchymal tissue surrounding the Mfh1-positive cell condensation. In 12.5 dpc and 13.5 dpc embryos, the expression of Mfh1 was localized to the perichondrium, which surrounds cells that express noggin and SOX9 mRNA. BMP-2 expression was overlapped with that of Mfh1 in the peripheral layer of 12.5 dpc and 13.5 dpc limb skeletal blastemas. Mfh1 expression persisted in the perichondrium of 15.5 dpc embryos though its level was reduced. We then examined the expression of Mfh1 in the mouse mesodermal cell line C1 that differentiates into chondrocytes in vitro. Mfh1 mRNA was expressed constitutively at low levels in C1 cells before the induction of its differentiation. On the differentiation of C1 cells into chondrocytes by the treatment with dexamethasone (Dex), Mfh1 expression was increased and peaked on day 4 of Dex treatment. Treatment with BMP-4/7 and BMP-7 protein also enhanced Mfh1 expression in C1 cells. To further examine the causative relationship between BMP and Mfh1 in mesenchymal tissue, we performed a mouse limb bud organ culture to implant BMP proteins with carriers into the mesenchymal tissue of the limb bud. Implantation of BMP-7 protein in the limb bud of 11.5 dpc embryos induced Mfh1 expression, suggesting that BMP regulates Mfh1 expression in limb mesenchyme. These results indicate that Mfh1 expression is associated with the early stage of chondrogenic differentiation both in vivo and in vitro and that BMPs regulate Mfh1 expression in skeletal precursor cells.
机译:Mfh1 / Foxc2是forkhead / winged螺旋转录因子家族的成员,其成员在各种物种的胚胎发生和细胞分化中起关键调节作用。缺失Mfh1的突变小鼠在轴向和颅骨骨骼生成中均存在缺陷,表明Mfh1需要骨骼组织发育。但是,Mfh1的作用及其在早期骨骼生成过程中的调控作用尚未完全了解。在这项研究中,我们调查了使用中皮祖细胞样细胞系C1在体内和体外软骨细胞分化过程中胚胎骨骼形成过程中Mfh1表达的发育调控。我们首先通过原位杂交检查了小鼠胚胎发生过程中与软骨表型相关分子(包括骨形态发生蛋白(BMP))有关的Mfh1的表达模式。在腹膜后(dpc)小鼠肢体的10.5天中,Mfh1信使RNA(mRNA)在组织的间充质细胞中表达,随后产生骨骼。在11.5 dpc胚胎中,Mfh1转录本在骨骼母细胞的细胞凝缩中表达。 BMP2转录物在肢体中表达Mfh1的细胞附近的细胞凝缩中表达,而BMP-7转录物在Mfh1阳性细胞凝缩周围的间充质组织中表达。在12.5 dpc和13.5 dpc的胚胎中,Mfh1的表达定位于软骨膜,该膜围绕着表达noggin和SOX9 mRNA的细胞。 BMP-2的表达与Mfh1在12.5 dpc和13.5 dpc肢体骨骼母细胞瘤的外周层重叠。 Mfh1表达在15.5 dpc胚胎的软骨膜中持续存在,尽管其水平降低了。然后,我们检查了Mfh1在小鼠中胚层细胞系C1中的表达,该细胞系在体外分化为软骨细胞。 Mfh1 mRNA诱导分化前在C1细胞中低水平组成性表达。通过地塞米松(Dex)处理可将C1细胞分化为软骨细胞,Mxh1表达增加,并在Dex处理的第4天达到高峰。用BMP-4 / 7和BMP-7蛋白处理还增强了C1细胞中Mfh1的表达。为了进一步检查间质组织中BMP和Mfh1之间的因果关系,我们进行了小鼠肢芽器官培养,将带有载体的BMP蛋白植入到肢芽的间质组织中。 BMP-7蛋白植入11.5 dpc胚胎的肢芽中可诱导Mfh1表达,表明BMP调节肢体间充质中Mfh1的表达。这些结果表明,Mfh1表达与体内和体外软骨形成分化的早期有关,并且BMP调节骨骼前体细胞中Mfh1的表达。

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