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Complete sealing zone formation needs multiple gene participation

机译:完整的密封区形成需要多个基因参与

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The mechanism of osteoclasts attachment to the bone surface has not been well understood. In particular sealing zone is a very specific structure of active osteoclast on bone. The molecular basis on its formation has recently attracted much attention in biologists. In this study, we have performed differential display (DD) PCR with the template RNAs extracted from osteoclasts cultured on ivory or collagen type I to identify genes specifically expressed in osteoclasts attached to ivory. Highly enriched osteoclasts were harvested from 10-day-old rabbit according to the method of Kakudo et al. and cultured on each surface. DDPCR was performed using their total RNAs, then PCR products were cloned into pCR-TRAP vector, followed by the DNA sequencing. 22 cDNA fragment clones were found in osteoclast attached to ivory. Among them, 11 clones which located at 3'terminal of related genes were sequenced. Two of them were found as known genes, i.e. PTX3 and DRAK1. We selected 6 clones and examined tissue distribution by slot blot. The data showed that 6 clones expressed in various pattern. These result indicated that different pattern of gene expression was revealed when osteoclast attached to different matrix. It also suggested osteoclasts could form the effective sealing zone with the participation of multiple genes.
机译:破骨细胞附着于骨表面的机制尚未得到很好的了解。特别地,密封区域是骨上的活性破骨细胞的非常特殊的结构。最近,其形成的分子基础已引起生物学家的广泛关注。在这项研究中,我们用从象牙或I型胶原上培养的破骨细胞提取的模板RNA进行了差异展示(DD)PCR,以鉴定在附着于象牙的破骨细胞中特异性表达的基因。根据Kakudo等人的方法,从10日龄的兔子中收获高含量的破骨细胞。并在每个表面上进行培养。使用其总RNA进行DDPCR,然后将PCR产物克隆到pCR-TRAP载体中,然后进行DNA测序。在与象牙相连的破骨细胞中发现了22个cDNA片段克隆。其中,对位于相关基因3'末端的11个克隆进行了测序。发现其中两个是已知基因,即PTX3和DRAK1。我们选择了6个克隆,并通过狭缝印迹检查了组织分布。数据显示6个克隆以各种模式表达。这些结果表明,破骨细胞附着在不同的基质上时,揭示了不同的基因表达模式。这也表明破骨细胞可以在多个基因的参与下形成有效的密封区域。

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