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Runx2 (Cbfa1, AML-3) interacts with histone deacetylase 6 and represses the p21(CIP1/WAF1) promoter

机译:Runx2(Cbfa1,amL-3)与组蛋白去乙酰化酶6相互作用并抑制p21(CIp1 / WaF1)启动子

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摘要

Runx2 (Cbfa1, AML-3) is multifunctional transcription factor that is essential for osteoblast development. Runx2 binds specific DNA sequences and interacts with transcriptional coactivators and corepressors to either activate or repress transcription of tissue-specific genes. In this study, the p21(CIP/WAF1) promoter was identified as a repressible target of Runx2. A carboxy-terminal repression domain distinct from the well-characterized TLE/Groucho-binding domain contributed to Runx2-mediated p21 repression. This carboxy-terminal domain was sufficient to repress a heterologous GAL reporter. The repressive activity of this domain was sensitive to the histone deacetylase inhibitor trichostatin A but not to trapoxin B. HDAC6, which is insensitive to trapoxin B, specifically interacted with the carboxy terminus of Runx2. The HDAC6 interaction domain of Runx2 was mapped to a region overlapping the nuclear matrix-targeting signal. The Runx2 carboxy terminus was necessary for recruitment of HDAC6 from the cytoplasm to chromatin. HDAC6 also colocalized and coimmunoprecipitated with the nuclear matrix-associated protein Runx2 in osteoblasts. Finally, we show that HDAC6 is expressed in differentiating osteoblasts and that the Runx2 carboxy terminus is necessary for maximal repression of the p21 promoter in preosteoblasts. These data identify Runx2 as the first transcription factor to interact with HDAC6 and suggest that HDAC6 may bind to Runx2 in differentiating osteoblasts to regulate tissue-specific gene expression.
机译:Runx2(Cbfa1,AML-3)是多功能转录因子,对成骨细胞的发育至关重要。 Runx2结合特定的DNA序列,并与转录共激活因子和共抑制因子相互作用,以激活或抑制组织特异性基因的转录。在这项研究中,p21(CIP / WAF1)启动子被确定为Runx2的可抑制靶标。羧基末端阻遏域不同于特征明确的TLE / Groucho结合域,有助于Runx2介导的p21阻遏。该羧基末端结构域足以阻抑异源GAL报道分子。该结构域的抑制活性对组蛋白脱乙酰基酶抑制剂曲古抑菌素A敏感,但对曲霉毒素B不敏感。HDAC6对曲霉毒素B不敏感,它与Runx2的羧基末端特异性相互作用。 Runx2的HDAC6相互作用域被映射到与核基质靶向信号重叠的区域。 Runx2羧基末端对于将HDAC6从细胞质募集到染色质是必需的。 HDAC6还与成骨细胞中的核基质相关蛋白Runx2共定位并共免疫沉淀。最后,我们表明HDAC6在分化成骨细胞中表达,并且Runx2羧基末端对于成骨细胞中p21启动子的最大抑制是必需的。这些数据将Runx2识别为与HDAC6相互作用的第一个转录因子,并暗示HDAC6可能在分化成骨细胞时与Runx2结合以调节组织特异性基因表达。

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