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miR-365:一种机械敏感性 microRNA 通过靶向组蛋白去乙酰化酶 4 刺激软骨细胞分化。

MiR-365: a mechanosensitive microRNA stimulates chondrocyte differentiation through targeting histone deacetylase 4.

机构信息

Cell and Molecular Biology Laboratory, Department of Orthopaedics, Alpert Medical School of Brown University/Rhode Island Hospital, 1 Hoppin St., Ste. 402, Providence, RI 02903, USA.

出版信息

FASEB J. 2011 Dec;25(12):4457-66. doi: 10.1096/fj.11-185132. Epub 2011 Aug 19.

Abstract

Mechanical stress plays an essential role in tissue development and remodeling. In this study, we determined the role of microRNA in chondrocyte mechanotransduction. Using microarray, we identified miR-365 as a mechanoresponsive microRNA in parallel to mechanical induction of Indian hedgehog (Ihh) in primary chicken chondrocytes cultured in 3-dimensional collagen scaffoldings under cyclic loading (1 Hz, 5% elongation). Interestingly, expression of miR-365 is elevated in the prehypertrophic zone of the growth plate, coinciding with the Ihh expression region in vivo. MiR-365 significantly stimulates chondrocyte proliferation and differentiation. MiR-365 increases expression of Ihh and the hypertrophic marker type X collagen, whereas anti-miR-365 inhibits the expression of these genes. We identified histone deacetylase 4 (HDAC4), an inhibitor of chondrocyte hypertrophy, as a target of miR-365. MiR-365 inhibits both endogenous HDAC4 protein levels as well as the activity of a reporter gene bearing the 3'-untranslated region of HDAC4 mRNA. Conversely, inhibition of endogenous miR-365 relieves the repression of HDAC4. Mutation of the miR-365 binding site in HDAC4 mRNA abolishes miR-365-mediated repression of the reporter gene activity. Overexpression of HDAC4 reverses miR-365 stimulation of chondrocyte differentiation markers including Ihh, Col X, and Runx2. Moreover, inhibition of miR-365 abolishes mechanical stimulation of chondrocyte differentiation. Taken together, miR-365 is the first identified mechanically responsive microRNA that regulates chondrocyte differentiation via directly targeting HDAC4.

摘要

机械应力在组织发育和重塑中起着至关重要的作用。在这项研究中,我们确定了 microRNA 在软骨细胞机械转导中的作用。通过微阵列,我们确定了 miR-365 是一种机械反应性 microRNA,与在 3 维胶原支架中培养的原代鸡软骨细胞在循环加载(1Hz,5%伸长)下机械诱导印度刺猬因子(Ihh)平行。有趣的是,miR-365 的表达在生长板的预肥大区升高,与体内 Ihh 表达区域相吻合。miR-365 显著刺激软骨细胞增殖和分化。miR-365 增加了 Ihh 和肥大标志物 X 型胶原的表达,而抗 miR-365 则抑制了这些基因的表达。我们鉴定了组蛋白去乙酰化酶 4(HDAC4),一种软骨细胞肥大的抑制剂,作为 miR-365 的靶标。miR-365 抑制内源性 HDAC4 蛋白水平和带有 HDAC4 mRNA 3'-非翻译区的报告基因的活性。相反,抑制内源性 miR-365 减轻了对 HDAC4 的抑制作用。HDAC4 mRNA 中 miR-365 结合位点的突变消除了 miR-365 对报告基因活性的抑制作用。HDAC4 的过表达逆转了 miR-365 对软骨细胞分化标志物包括 Ihh、Col X 和 Runx2 的刺激作用。此外,抑制 miR-365 可消除机械刺激对软骨细胞分化的影响。总之,miR-365 是第一个被鉴定为通过直接靶向 HDAC4 调节软骨细胞分化的机械反应性 microRNA。

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