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Runx2 通过与 Col10a1 基因顺式增强子的直接相互作用,促进小鼠 Col10a1 基因的调控。

Runx2 contributes to murine Col10a1 gene regulation through direct interaction with its cis-enhancer.

机构信息

Department of Anatomy and Cell Biology, Rush University Medical Center, Chicago, IL, USA.

出版信息

J Bone Miner Res. 2011 Dec;26(12):2899-910. doi: 10.1002/jbmr.504.

Abstract

We have recently shown that a 150-bp Col10a1 distal promoter (-4296 to -4147 bp) is sufficient to direct hypertrophic chondrocyte-specific reporter (LacZ) expression in vivo. More recently, through detailed sequence analysis we identified two putative tandem-repeat Runx2 binding sites within the 3'-end of this 150-bp region (TGTGGG-TGTGGC, -4187 to -4176 bp). Candidate electrophoretic mobility shift assay (EMSA), chromatin immunoprecipitation, and transfection studies demonstrate that these putative Runx2 sites bind Runx2 and mediate upregulated Col10a1/reporter activity in vitro. Transgenic studies using the 5'-sequence without Runx2 sites were not able to drive the cell-specific LacZ reporter activity, suggesting the in vivo requirement of the Runx2 sites located in the 3'-end in mediating Col10a1/reporter expression. Indeed, mutating the Runx2 sites in the context of the 150-bp promoter abolishes its capacity to drive hypertrophic chondrocyte-specific reporter expression in transgenic mice. We have also generated multiple transgenic mouse lines using only the 3'-sequence containing the Runx2 sites to drive the LacZ gene. Interestingly, no hypertrophic chondrocyte-specific blue staining was observed in these transgenic mice. Together, our data support that Runx2 directly interacts with murine Col10a1 cis-enhancer. This interaction is required but not sufficient for cell-specific Col10a1 promoter activity in vivo. Additional cooperative/repressive elements within the 5'- or 3'-sequences of this 150-bp promoter are needed to work with Runx2 together to mediate cell-specific Col10a1 expression. Further delineation of these elements/factors has the potential to identify novel therapeutic targets for multiple skeletal disorders, including osteoarthritis, that show abnormal Col10a1 expression and altered chondrocyte maturation.

摘要

我们最近表明,一个 150bp 的 Col10a1 远端启动子(-4296 到-4147bp)足以在体内指导肥大软骨细胞特异性报告基因(LacZ)表达。最近,通过详细的序列分析,我们在这个 150bp 区域的 3'末端发现了两个可能的串联重复 Runx2 结合位点(TGTGGG-TGTGGC,-4187 到-4176bp)。候选电泳迁移率变动分析(EMSA)、染色质免疫沉淀和转染研究表明,这些假定的 Runx2 位点结合 Runx2,并在体外介导 Col10a1/报告基因的上调活性。使用不含 Runx2 位点的 5'序列的转基因研究不能驱动细胞特异性 LacZ 报告基因活性,这表明在体内需要位于 3'末端的 Runx2 位点来介导 Col10a1/报告基因的表达。事实上,在 150bp 启动子的背景下突变 Runx2 位点会使其丧失在转基因小鼠中驱动肥大软骨细胞特异性报告基因表达的能力。我们还使用仅包含 Runx2 位点的 3'序列生成了多个转基因小鼠系来驱动 LacZ 基因。有趣的是,在这些转基因小鼠中没有观察到肥大软骨细胞特异性的蓝色染色。总的来说,我们的数据支持 Runx2 直接与鼠 Col10a1 顺式增强子相互作用。这种相互作用是体内细胞特异性 Col10a1 启动子活性所必需的,但不是充分的。需要在这个 150bp 启动子的 5'或 3'序列中存在额外的合作/抑制元件,与 Runx2 一起共同介导细胞特异性 Col10a1 表达。进一步阐明这些元件/因素有可能为包括骨关节炎在内的多种骨骼疾病确定新的治疗靶点,这些疾病表现出异常的 Col10a1 表达和软骨细胞成熟改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ef0/3505381/1b8b27531a64/jbmr0026-2899-f1.jpg

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