一种新的启动子调控人类破骨细胞降钙素受体基因表达

Zhenxin Shen , Tania N. Crotti , Merrilee R. Flannery , Kenichiro Matsuzaki , Steven R. Goldring , Kevin P. McHugh
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引用次数: 28

摘要

降钙素受体(CTR)在多种组织和细胞类型中表达。在骨中,其表达仅限于介导骨吸收的破骨细胞。人类CTR (hCTR)基因具有与猪(pCTR)和小鼠(mCTR) CTR基因相似的复杂结构组织。在这些物种中,单个基因的选择性剪接产生多个CTR亚型,这些亚型以组织特异性和物种特异性模式分布。然而,5 '调控区域的结构组织和负责不同CTR亚型组织特异性表达的转录机制尚未完全确定。目前的研究是为了表征hCTR的5 '区域的结构组织,并确定参与破骨细胞特异性转录激活的调控区域。利用逆转录聚合酶链反应(RT-PCR)和瞬时转染hCTR启动子-荧光素酶报告基因构建体对人破骨细胞mRNA进行分析,发现hCTR基因5 '侧序列中有两个区域调控破骨细胞中CTR基因的表达。这两种可能的启动子都对破骨细胞诱导因子、NF-κB配体受体激活因子(RANKL)有反应,并被RANKL诱导的活化T细胞的转录因子核因子(NFATc1)反式激活,与调节破骨细胞中CTR基因表达的作用一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel promoter regulates calcitonin receptor gene expression in human osteoclasts

The calcitonin receptor (CTR) is expressed in a wide variety of tissues and cell types. In bone, its expression is restricted to osteoclasts, the cells that mediate bone resorption. The human CTR (hCTR) gene has a complex structural organization that exhibits similarity to the porcine (pCTR) and mouse (mCTR) CTR genes. In these species, alternative splicing of a single gene generates multiple CTR isoforms that are distributed in both tissue-specific and species-specific patterns. However, the structural organization of the 5′ putative regulatory region and transcriptional mechanisms responsible for tissue-specific expression of the different CTR isoforms are not fully defined. The present studies were undertaken to characterize the structural organization of the 5′-region of the hCTR and identify the regulatory regions involved in osteoclast-specific transcriptional activation. Analysis of mRNA prepared from human osteoclasts using reverse transcription-polymerase chain reaction (RT-PCR) and transient transfection of hCTR promoter-luciferase reporter constructs identified two regions in the 5′-flanking sequence of the hCTR gene that regulated CTR gene expression in osteoclasts. Both of these putative promoters were responsive to the osteoclast-inducing cytokine, receptor activator of NF-κB ligand (RANKL) and demonstrated trans-activation by the RANKL-induced transcription factor nuclear factor of activated T cells (NFATc1), consistent with a role in regulating CTR gene expression in osteoclasts.

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