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Mediator MED23 cooperates with RUNX2 to drive osteoblast differentiation and bone development

机译:介体MED23与RUNX2合作驱动成骨细胞分化和骨骼发育

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How lineage specifiers are regulated during development is an outstanding question, and the molecular regulation of osteogenic factor RUNX2 remains to be fully understood. Here we report that the Mediator subunit MED23 cooperates with RUNX2 to regulate osteoblast differentiation and bone development. Med23 deletion in mesenchymal stem cells or osteoblast precursors results in multiple bone defects similar to those observed in Runx2 +/? mice. In vitro , Med23 -deficient progenitor cells are refractory to osteoblast differentiation, and Med23 deficiency reduces Runx2 -target gene activity without changing Runx2 expression. Mechanistically, MED23 binds to RUNX2 and modulates its transcriptional activity. Moreover, Med23 deficiency in osteoprogenitor cells exacerbates the skeletal abnormalities observed in Runx2 +/ ? mice. Collectively, our results establish a genetic and physical interaction between RUNX2 and MED23, suggesting that MED23 constitutes a molecular node in the regulatory network of anabolic bone formation and related diseases.
机译:如何在发育过程中调节谱系指定者是一个悬而未决的问题,成骨因子RUNX2的分子调节尚待充分了解。在这里,我们报道介体MED23亚基与RUNX2协同调节成骨细胞的分化和骨骼发育。间充质干细胞或成骨细胞前体中的Med23缺失导致多个骨骼缺陷,类似于Runx2 + /?小鼠中观察到的那些。在体外,Med23缺陷的祖细胞对成骨细胞的分化是难治的,Med23缺陷会降低Runx2靶基因的活性,而不会改变Runx2的表达。从机理上讲,MED23与RUNX2结合并调节其转录活性。此外,骨祖细胞中的Med23缺乏加剧了Runx2 + /?小鼠中观察到的骨骼异常。总的来说,我们的结果建立了RUNX2和MED23之间的遗传和物理相互作用,这表明MED23构成了合成代谢性骨形成和相关疾病的调控网络中的一个分子节点。

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