首页> 美国卫生研究院文献>Journal of Bone and Mineral Research >SMAD3 Functions as a Transcriptional Repressor of Acid-Sensing Ion Channel 3 (ASIC3) in Nucleus Pulposus Cells of the Intervertebral Disc
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SMAD3 Functions as a Transcriptional Repressor of Acid-Sensing Ion Channel 3 (ASIC3) in Nucleus Pulposus Cells of the Intervertebral Disc

机译:SMAD3充当椎间盘髓核细胞中酸敏感离子通道3(ASIC3)的转录阻遏物。

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摘要

The goal of this investigation was to study the regulation of acid-sensing ion channel (ASIC)3 expression by TGFβ in the nucleus pulposus cells of the intervertebral disc. Analysis of human nucleus pulposus tissue indicated decreased ASIC3 and elevated TGFβ expression in the degenerate state. In a parallel study, treatment of nucleus pulposus cells with TGFβ resulted in decreased expression of ASIC3 mRNA and protein. Suppression of ASIC3 promoter activity was evident when the nucleus pulposus cells were treated with TGFβ or co-transfected with the constitutively active ALK5 or a smad3 construct. On the other hand, co-transfection of dominant negative smad3 or smad7 restored ASIC3 promoter activity. We validated the role of smad3 in controlling ASIC3 expression using cells derived from smad3-null mice. ASIC3 promoter activity in the null cells was 2- to 3-fold higher than the wildtype cells. Moreover, expression of smad3 in null cells decreased ASIC3 promoter activity by almost 50%. Further studies using deletion constructs and trichostatin A treatment showed that the full-length smad3 was necessary, and the suppression involved recruitment of histone deacetylase to the promoter. To determine the mechanism, we evaluated the rat ASIC3 promoter sequence and noted the presence of two smad interacting CAGA box motifs. Gel-shift and supershift analysis indicated that smad3 protein was bound to this motif. Chromatin immunoprecipitation analysis confirmed that smad3 bound both the CAGA elements. Results of these studies clearly show that TGFβ is highly expressed in the degenerate disc and through smad3 serves as a negative regulator of ASIC3 expression.
机译:这项研究的目的是研究TGFβ对椎间盘髓核细胞中酸敏感离子通道(ASIC)3表达的调节。对人髓核组织的分析表明,简并状态下ASIC3减少,TGFβ表达升高。在一项平行研究中,用TGFβ处理髓核细胞导致ASIC3 mRNA和蛋白表达降低。当髓核细胞用TGFβ处理或与组成型活性ALK5或smad3构建体共转染时,ASIC3启动子活性的抑制是明显的。另一方面,显性阴性smad3或smad7的共转染恢复了ASIC3启动子活性。我们验证了smad3在使用smad3-null小鼠细胞控制ASIC3表达中的作用。空细胞中的ASIC3启动子活性比野生型细胞高2-3倍。而且,smad3在空细胞中的表达使ASIC3启动子活性降低了近50%。使用缺失构建体和曲古抑菌素A处理的进一步研究表明,全长smad3是必需的,抑制涉及将组蛋白脱乙酰基酶募集至启动子。为了确定该机制,我们评估了大鼠ASIC3启动子序列,并指出了两个相互干扰的CAGA框基序的存在。凝胶移位和超移位分析表明,smad3蛋白与该基序结合。染色质免疫沉淀分析证实smad3结合了两个CAGA元件。这些研究结果清楚地表明,TGFβ在简并椎间盘中高度表达,并且通过smad3充当ASIC3表达的负调节剂。

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