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机械拉伸通过诱导内半月板细胞中 SOX9 的核转位来增强染色质上 COL2A1 的表达。

Mechanical stretch enhances COL2A1 expression on chromatin by inducing SOX9 nuclear translocalization in inner meniscus cells.

机构信息

Department of Orthopaedic Surgery, Science of Functional Recovery and Reconstruction, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, 2-5-1 Shikatacho, Kitaku, Okayama 700-8558, Japan.

出版信息

J Orthop Res. 2012 Mar;30(3):468-74. doi: 10.1002/jor.21528. Epub 2011 Aug 18.

Abstract

The meniscus plays an important role in controlling the biomechanics of the knee. However, the mechanical stress-related response in meniscus cells remains unclear. We investigated mechanical stretch-regulated gene expression in human meniscus cells. Human inner and outer meniscus cells were prepared from the inner and outer halves of the lateral meniscus. The gene expressions of Sry-type HMG box (SOX) 9 and α1(II) collagen (COL2A1) were assessed by real-time PCR analyses after cyclic tensile strain (CTS) treatment (0.5 Hz, 5% stretch). The localization and phosphorylation of SOX9 were evaluated by immunohistochemical and Western blot (WB) analyses. Chromatin immunoprecipitation (IP) analysis was performed to assess the stretch-related protein-DNA complex formation between SOX9 and the COL2A1 enhancer on chromatin. Type II collagen deposition and SOX9 production were detected only in inner menisci. CTS treatments increased expression of the COL2A1 and SOX9 genes in inner meniscus cells, but not in outer meniscus cells. In addition, CTS treatments stimulated nuclear translocalization and phosphorylation of SOX9 in inner meniscus cells. Chromatin IP analyses revealed that CTS increased the association between SOX9 and its DNA-binding site, included in the COL2A1 enhancer, on chromatin. Our results indicate that inner and outer meniscus cells have different properties in mechanical stretch-induced COL2A1 expression. In inner meniscus cells, mechanical stretch may have an essential role in the epigenetic regulation of COL2A1 expression.

摘要

半月板在控制膝关节生物力学方面起着重要作用。然而,半月板细胞的机械应激相关反应尚不清楚。我们研究了机械拉伸调节人半月板细胞中的基因表达。从外侧半月板的内半和外半部分制备人内半月板细胞和外半月板细胞。通过实时 PCR 分析评估循环拉伸应变 (CTS) 处理(0.5 Hz,5%拉伸)后 Sry 型 HMG 盒 (SOX) 9 和 α1(II) 胶原 (COL2A1) 的基因表达。通过免疫组织化学和 Western blot (WB) 分析评估 SOX9 的定位和磷酸化。进行染色质免疫沉淀 (IP) 分析以评估 SOX9 和 COL2A1 增强子上染色质之间的拉伸相关蛋白-DNA 复合物形成。仅在内半月板中检测到 II 型胶原沉积和 SOX9 产生。CTS 处理增加了内半月板细胞中 COL2A1 和 SOX9 基因的表达,但在外半月板细胞中没有增加。此外,CTS 处理刺激了内半月板细胞中 SOX9 的核易位和磷酸化。染色质 IP 分析表明,CTS 增加了 SOX9 与其 DNA 结合位点(包含在 COL2A1 增强子中)之间在染色质上的结合。我们的结果表明,内半月板细胞和外半月板细胞在外力拉伸诱导 COL2A1 表达方面具有不同的特性。在内半月板细胞中,机械拉伸可能在外源性 COL2A1 表达的表观遗传调控中起重要作用。

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