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HIF-1α 通过激活成骨细胞中的 Sost 表达来抑制 Wnt 信号通路。

HIF-1α inhibits Wnt signaling pathway by activating Sost expression in osteoblasts.

机构信息

Laboratory of Bone Tissue Engineering, Beijing Research Institute of Traumatology and Orthopaedics, Beijing JiShuiTan Hospital, Beijing, China.

出版信息

PLoS One. 2013 Jun 11;8(6):e65940. doi: 10.1371/journal.pone.0065940. Print 2013.

Abstract

The nature of the cellular and molecular mechanisms for the transition of avascular cartilage replacement with bone during endochondral ossification remains poorly understood. One of the driving forces is hypoxia. As a master regulator of hypoxia, hypoxia-inducible factor-1α (HIF-1α) has been reported to couple angiogenesis to osteogenesis. Our recent study has demonstrated that osteoblast growth is inhibited under hypoxia and that HIF-1α cooperates with Osterix (Osx) to inhibit Wnt pathway. However, molecular mechanisms for inhibitory effects of HIF-1α on Wnt pathway are not well understood. In this study, our quantitative RT-PCR results revealed that the expression of a Wnt antagonist Sclerostin (Sost) was upregulated in osteoblasts during hypoxia while HIF-1α was upregulated. Treatment of desferrioxamine (DFO), a HIF-1α activator, led to further increase of Sost expression, suggesting that HIF-1α may activate Sost expression. The regulation of Sost gene expression by HIF-1α was then investigated. We performed loss-of-function experiments to examine Sost expression by using siRNA approach against HIF-1α, and found that the inhibition of HIF-1α by siRNA in osteoblasts led to the decrease of Sost expression. To address transcriptional regulation of Sost gene by HIF-1α, transient transfection assay was performed and showed that HIF-1α activated Sost-1 kb promoter reporter activity in a dose-dependent manner. To narrow down the minimal region of Sost promoter activated by HIF-1α, we generated a series of deletion mutants of Sost constructs. It was demonstrated that Sost-260 was the minimal region of Sost promoter for HIF-1α activation and that Sost-106 construct, which lack hypoxia response element, abolished HIF-1α-mediated Sost reporter activation. Gel shift assay showed that HIF-1 bound to the promoter sequence of Sost directly. These findings support our hypothesis that HIF-1α activates Sost expression. This study provides a novel molecular mechanism through which HIF-1α inhibits Wnt signaling in osteoblasts.

摘要

软骨内骨化过程中,软骨血管化向骨转化的细胞和分子机制的本质仍不清楚。其中一个驱动力是缺氧。作为缺氧的主要调节因子,缺氧诱导因子-1α(HIF-1α)已被报道将血管生成与成骨作用偶联。我们最近的研究表明,在缺氧条件下,成骨细胞的生长受到抑制,并且 HIF-1α 与成骨转录因子(Osx)合作抑制 Wnt 通路。然而,HIF-1α 对 Wnt 通路的抑制作用的分子机制尚不清楚。在这项研究中,我们的定量 RT-PCR 结果表明,在缺氧条件下,成骨细胞中 Wnt 拮抗剂 Sclerostin(Sost)的表达上调,而 HIF-1α 表达上调。用 HIF-1α 激活剂去铁胺(DFO)处理会导致 Sost 表达进一步增加,表明 HIF-1α 可能激活 Sost 表达。然后研究了 HIF-1α 对 Sost 基因表达的调控。我们通过使用针对 HIF-1α 的 siRNA 进行了功能丧失实验,以检查 Sost 的表达,发现成骨细胞中 HIF-1α 的抑制导致 Sost 表达减少。为了研究 HIF-1α 对 Sost 基因的转录调控,进行了瞬时转染实验,结果表明 HIF-1α 以剂量依赖性方式激活 Sost-1kb 启动子报告基因活性。为了缩小 HIF-1α 激活的 Sost 启动子的最小区域,我们生成了一系列 Sost 构建体的缺失突变体。结果表明,Sost-260 是 HIF-1α 激活的 Sost 启动子的最小区域,而缺乏缺氧反应元件的 Sost-106 构建体则消除了 HIF-1α 介导的 Sost 报告基因激活。凝胶迁移实验表明 HIF-1 直接与 Sost 启动子序列结合。这些发现支持我们的假设,即 HIF-1α 激活 Sost 表达。这项研究提供了一个新的分子机制,通过该机制,HIF-1α 在成骨细胞中抑制 Wnt 信号传导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ebf/3679053/1192d5192807/pone.0065940.g001.jpg

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