首页> 外文期刊>Neuropeptides: An International Journal >Mechanical stimulation induces preprotachykinin gene expression in osteoarthritic chondrocytes which is correlated with modulation of the transcription factor neuron restrictive silence factor.
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Mechanical stimulation induces preprotachykinin gene expression in osteoarthritic chondrocytes which is correlated with modulation of the transcription factor neuron restrictive silence factor.

机译:机械刺激在骨关节炎软骨细胞中诱导前促激肽基因表达,这与转录因子神经元限制性沉默因子的调节有关。

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We have previously demonstrated that the transcription factor termed neuron restrictive silencer factor (NRSF) and the truncated splice variant, NRSF short form (sNRSF) are major modulators of preprotachykinin A (TAC1) gene expression. In this communication we addressed whether TAC1 gene expression would be effected in response to mechanical stimulation of both normal and osteoarthritic (OA) chondrocytes. Chondrocytes were mechanically stimulated for 20min, and then incubated under normal tissue culture conditions for 1 or 3h. RT-PCR and quantitative PCR (qPCR) were used to investigate expression of TAC1, NRSF and sNRSF mRNA at these time points. Western blotting was used to validate and confirm expression of sNRSF protein in chondrocytes in response to mechanical stimulation. We observed that TAC1 was expressed in normal chondrocytes, with no evidence of NRSF or sNRSF expression. TAC1 mRNA expression did not significantly change following mechanical stimulation in normal cells. OA chondrocytes expressed TAC1 and sNRSF mRNA, though not NRSF, and following mechanical stimulation there was a significant upregulation of both TAC1 and sNRSF mRNA, which returned to baseline levels 3h post-stimulation. sNRSF protein was upregulated at 1 and 2h following stimulation of OA chondrocytes. In summary, differential expression of TAC1 and sNRSF in OA chondrocytes associates their expression with the disease. The change in expression of sNRSF and TAC1 mRNA following mechanical stimulation in OA but not normal chondrocytes suggests that sNRSF may be involved in the regulation of SP production in OA cartilage. These differences between normal and OA mechanotransduction responses may be important in the production of phenotypic changes present in diseased cartilage.
机译:我们以前已经证明,称为神经元限制性沉默沉默子(NRSF)的转录因子和剪接的剪接变体NRSF短形式(sNRSF)是前促激肽A(TAC1)基因表达的主要调节剂。在此交流中,我们探讨了TAC1基因表达是否会响应机械刺激正常和骨关节炎(OA)软骨细胞而受到影响。机械刺激软骨细胞20分钟,然后在正常组织培养条件下温育1或3小时。 RT-PCR和定量PCR(qPCR)用于研究TAC1,NRSF和sNRSF mRNA在这些时间点的表达。 Western印迹用于验证和确认响应机械刺激的软骨细胞中sNRSF蛋白的表达。我们观察到TAC1在正常软骨细胞中表达,没有NRSF或sNRSF表达的证据。在正常细胞中机械刺激后,TAC1 mRNA表达没有明显改变。 OA软骨细胞表达TAC1和sNRSF mRNA,但不表达NRSF,并且在机械刺激后,TAC1和sNRSF mRNA均显着上调,刺激后3小时恢复到基线水平。在刺激OA软骨细胞后1和2小时,sNRSF蛋白上调。总之,OA软骨细胞中TAC1和sNRSF的差异表达将其表达与疾病联系起来。在OA中机械刺激后sNRSF和TAC1 mRNA表达的变化,但在正常软骨细胞中没有变化,这表明sNRSF可能参与了OA软骨SP产生的调节。正常和OA机械转导反应之间的这些差异可能在患病软骨表型变化的产生中很重要。

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