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对在琼脂糖中培养的软骨细胞响应动态压缩的分子分析。

Molecular analysis of chondrocytes cultured in agarose in response to dynamic compression.

作者信息

Bougault Carole, Paumier Anne, Aubert-Foucher Elisabeth, Mallein-Gerin Frédéric

机构信息

UMR 5086, CNRS, Université de Lyon, IFR 128, IBCP, Institut de Biologie et Chimie des Protéines, 7 passage du Vercors F-69367 Lyon FRANCE.

出版信息

BMC Biotechnol. 2008 Sep 15;8:71. doi: 10.1186/1472-6750-8-71.

Abstract

BACKGROUND

Articular cartilage is exposed to high mechanical loads under normal physiological conditions and articular chondrocytes regulate the composition of cartilaginous matrix, in response to mechanical signals. However, the intracellular pathways involved in mechanotransduction are still being defined. Using the well-characterized chondrocyte/agarose model system and dynamic compression, we report protocols for preparing and characterizing constructs of murine chondrocytes and agarose, and analyzing the effect of compression on steady-state level of mRNA by RT-PCR, gene transcription by gene reporter assay, and phosphorylation state of signalling molecules by Western-blotting. The mouse model is of particular interest because of the availability of a large choice of bio-molecular tools suitable to study it, as well as genetically modified mice.

RESULTS

Chondrocytes cultured in agarose for one week were surrounded by a newly synthesized pericellular matrix, as revealed by immunohistochemistry prior to compression experiments. This observation indicates that this model system is suitable to study the role of matrix molecules and trans-membrane receptors in cellular responsiveness to mechanical stress. The chondrocyte/agarose constructs were then submitted to dynamic compression with FX-4000C Flexercell Compression Plus System (Flexcell). After clearing proteins off agarose, Western-blotting analysis showed transient activation of Mitogen-activated protein kinases (MAPK) in response to dynamic compression. After assessment by capillary electrophoresis of the quality of RNA extracted from agarose, steady-state levels of mRNA expression was measured by real time PCR. We observed an up-regulation of cFos and cJun mRNA levels as a response to compression, in accordance with the mechanosensitive character observed for these two genes in other studies using cartilage explants submitted to compression. To explore further the biological response of mouse chondrocytes to the dynamic compression at the transcriptional level, we also developed an approach for monitoring changes in gene transcription in agarose culture by using reporter promoter constructs. A decrease in promoter activity of the gene coding for type II procollagen, the most abundant protein in cartilage, was observed in response to dynamic loading.

CONCLUSION

The protocols developed here offer the possibility to perform an integrated analysis of the molecular mechanisms of mechanotransduction in chondrocytes, at the gene and protein level.

摘要

背景

在正常生理条件下,关节软骨承受着高机械负荷,关节软骨细胞会根据机械信号调节软骨基质的组成。然而,机械转导所涉及的细胞内途径仍有待确定。利用特征明确的软骨细胞/琼脂糖模型系统和动态压缩技术,我们报告了制备和表征小鼠软骨细胞与琼脂糖构建体的方案,以及通过逆转录聚合酶链反应(RT-PCR)分析压缩对mRNA稳态水平的影响、通过基因报告分析评估基因转录情况,以及通过蛋白质免疫印迹法检测信号分子的磷酸化状态。由于有大量适用于研究的生物分子工具以及基因改造小鼠,小鼠模型特别受关注。

结果

在压缩实验前通过免疫组织化学显示,在琼脂糖中培养一周的软骨细胞被新合成的细胞周围基质所包围。这一观察结果表明,该模型系统适合研究基质分子和跨膜受体在细胞对机械应力反应中的作用。然后,使用FX-4000C Flexercell Compression Plus System(Flexcell)对软骨细胞/琼脂糖构建体进行动态压缩。在去除琼脂糖中的蛋白质后,蛋白质免疫印迹分析显示,有丝分裂原活化蛋白激酶(MAPK)对动态压缩有瞬时激活反应。在用毛细管电泳评估从琼脂糖中提取的RNA质量后,通过实时聚合酶链反应测量mRNA表达的稳态水平。我们观察到,作为对压缩的反应,cFos和cJun mRNA水平上调,这与在其他使用受压软骨外植体的研究中观察到的这两个基因的机械敏感特性一致。为了在转录水平上进一步探索小鼠软骨细胞对动态压缩的生物学反应,我们还开发了一种方法,通过使用报告基因启动子构建体来监测琼脂糖培养中基因转录的变化。观察到,作为对动态加载的反应,编码软骨中最丰富蛋白质的II型前胶原基因的启动子活性降低。

结论

这里开发的方案提供了在基因和蛋白质水平上对软骨细胞机械转导分子机制进行综合分析的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/694e/2556324/d8efa825df32/1472-6750-8-71-1.jpg

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