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GATA-3 通过转录上调 bcl-x 表达参与骨愈合的调节。

Participation of GATA-3 in regulation of bone healing through transcriptional upregulation of bcl-x expression.

机构信息

Graduate Institute of Medical Sciences, College of Medicine, Taipei Medical University, Taipei, Taiwan.

Cell Physiology and Molecular Image Research Center, Taipei Medical University-Wan Fang Medical Center, Taipei, Taiwan.

出版信息

Exp Mol Med. 2017 Nov 24;49(11):e398. doi: 10.1038/emm.2017.182.

Abstract

We have previously demonstrated the expression of GATA-DNA-binding protein (GATA)-3, a transcription factor, in osteoblasts and have verified its function in transducing cell survival signaling. This translational study was further designed to evaluate the roles of GATA-3 in regulating bone healing and to explore its possible mechanisms. A metaphyseal bone defect was created in the left femurs of male ICR mice. Analysis by micro-computed topography showed that the bone volume, trabecular bone number and trabecular thickness were augmented and that the trabecular pattern factor decreased. Interestingly, immunohistological analyses showed specific expression of GATA-3 in the defect area. In addition, colocalized expression of GATA-3 and alkaline phosphatase was observed at the wound site. As the fracture healed, the amounts of phosphorylated and non-phosphorylated GATA-3 concurrently increased. Separately, GATA-3 mRNA was induced during bone healing, and, levels of Runx2 mRNA and protein were also increased. The results of confocal microscopy and co-immunoprecipitation showed an association between nuclear GATA-3 and Runx2 in the area of insult. In parallel with fracture healing, Bcl-XL mRNA was significantly triggered. A bioinformatic search revealed the existence of a GATA-3-specific DNA-binding element in the promoter region of the bcl-x gene. Analysis by chromatin immunoprecipitation assays further demonstrated transactivation activity by which GATA-3 regulated bcl-x gene expression. Therefore, this study shows that GATA-3 participates in the healing of bone fractures via regulating bcl-xL gene expression, owing to its association with Runx2. In the clinic, GATA-3 may be used as a biomarker for diagnoses/prognoses or as a therapeutic target for bone diseases, such as bone fractures.

摘要

我们之前已经证明了 GATA 结合蛋白(GATA)-3 的表达,一种转录因子,在成骨细胞中,并验证了其在传递细胞存活信号中的作用。这项转化研究旨在进一步评估 GATA-3 在调节骨愈合中的作用,并探索其可能的机制。在雄性 ICR 小鼠的左股骨创建干骺端骨缺损。通过微计算机断层扫描分析表明,骨体积、骨小梁数量和骨小梁厚度增加,而骨小梁模式因子降低。有趣的是,免疫组织化学分析显示 GATA-3 在缺陷区域的特异性表达。此外,在创伤部位观察到 GATA-3 和碱性磷酸酶的共定位表达。随着骨折愈合,磷酸化和非磷酸化 GATA-3 的量同时增加。另外,在骨愈合过程中诱导 GATA-3 mRNA,并且 Runx2 mRNA 和蛋白的水平也增加。共聚焦显微镜和共免疫沉淀的结果表明核 GATA-3 和 Runx2 在损伤区域之间存在关联。与骨折愈合平行,Bcl-XL mRNA 显著触发。生物信息学搜索显示 bcl-x 基因启动子区域存在 GATA-3 特异性 DNA 结合元件。染色质免疫沉淀分析进一步证明 GATA-3 通过调节 bcl-x 基因表达具有转录激活活性。因此,这项研究表明,GATA-3 通过与 Runx2 结合,参与骨折的愈合,从而调节 bcl-xL 基因的表达。在临床上,GATA-3 可作为骨疾病(如骨折)的诊断/预后标志物或治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2cb/5704189/369c6ce93a98/emm2017182f3.jpg

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