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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Differentiation-dependent association of phosphorylated extracellular signal-regulated kinase with the chromatin of osteoblast-related genes.
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Differentiation-dependent association of phosphorylated extracellular signal-regulated kinase with the chromatin of osteoblast-related genes.

机译:磷酸化细胞外信号调节激酶与成骨细胞相关基因染色质的分化依赖性关联。

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摘要

The ERK/MAP kinase pathway is an important regulator of gene expression and differentiation in postmitotic cells. To understand how this pathway controls gene expression in bone, we examined the subnuclear localization of P-ERK in differentiating osteoblasts. Induction of differentiation was accompanied by increased ERK phosphorylation and expression of osteoblast-related genes, including osteocalcin (Bglap2) and bone sialoprotein (Ibsp). Confocal immunofluorescence microscopy revealed that P-ERK colocalized with the RUNX2 transcription factor in the nuclei of differentiating cells. Interestingly, a portion of this nuclear P-ERK was directly bound to the proximal promoter regions of Bglap2 and Ibsp. Furthermore, the level of P-ERK binding to chromatin increased with differentiation, whereas RUNX2 binding remained relatively constant. The P-ERK-chromatin interaction was seen only in RUNX2-positive cells, required intact RUNX2-selective enhancer sequences, and was blocked with MAPK inhibition. These studies show for the first time that RUNX2 specifically targets P-ERK to the chromatin of osteoblast-related genes, where it may phosphorylate multiple substrates, including RUNX2, resulting in altered chromatin structure and gene expression.
机译:ERK / MAP激酶途径是有丝分裂后细胞中基因表达和分化的重要调节剂。为了了解该途径如何控制骨骼中的基因表达,我们检查了P-ERK在分化成骨细胞中的亚核定位。分化的诱导伴随着ERK磷酸化的增加和成骨细胞相关基因的表达,包括骨钙蛋白(Bglap2)和骨唾液蛋白(Ibsp)。共聚焦免疫荧光显微镜显示,P-ERK与RUNX2转录因子共定位在分化细胞的核内。有趣的是,该核P-ERK的一部分直接结合到Bglap2和Ibsp的近端启动子区域。此外,P-ERK与染色质结合的水平随分化而增加,而RUNX2结合保持相对恒定。 P-ERK-染色质相互作用仅在RUNX2阳性细胞中可见,需要完整的RUNX2选择性增强子序列,并被MAPK抑制所阻断。这些研究首次表明,RUNX2专门将P-ERK靶向成骨细胞相关基因的染色质,在那里它可能使包括RUNX2在内的多种底物磷酸化,从而导致染色质结构和基因表达发生改变。

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