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新型组织修复相关基因c-ski在正常及辐射损伤伤口愈合过程中的表达及可能机制

Expression and possible mechanism of c-ski, a novel tissue repair-related gene during normal and radiation-impaired wound healing.

作者信息

Liu Xia, Zhang En, Li Ping, Liu Jianzhong, Zhou Ping, Gu Da-yong, Chen Xingyun, Cheng Tianmin, Zhou Yuanguo

机构信息

Molecular Biology Center, Research Institute of Surgery, Da Ping Hospital, Chongqing City, People's Republic of China.

出版信息

Wound Repair Regen. 2006 Mar-Apr;14(2):162-71. doi: 10.1111/j.1743-6109.2006.00106.x.

Abstract

C-ski is a complicated regulating factor for fibroblast proliferation and an important co-repressor of Smad3. Although inhibiting Smad3 activity can markedly promote wound healing because Smad3 mediates the role of transforming growth factor-beta in inhibiting cell proliferation and inducing cell apoptosis; there has been no report on whether c-ski is expressed during wound healing and the relationship between its expression and wound healing. By establishing animal models of normal and radiation-impaired wound healing and using immunohistochemistry, in situ hybridization, and reverse transcription-polymerase chain reaction, we found that c-ski was expressed after wounding and reached its peak on day 9 and then significantly decreased. C-ski was present in all repair cells, and was especially prominent in fibroblasts. Compared with the control side, the irradiated side showed a lower expression of c-ski on postwound days 3-9, but higher on day 15, and not significantly different after the wound was healed. The expression of Smad3 was in contrast to the c-ski and cellular proliferation was similar to that of c-ski expression. The apoptosis index was significantly higher on the irradiated side on days 3-9 compared with the control side. In vitro, 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide results showed that c-ski could reverse the inhibitory role of Smad3 on fibroblast proliferation. Flow cytometry analysis found that c-ski also diminished fibroblast apoptosis induced by Smad3 transfection. These results suggest that there is not only obvious expression of this regulatory protein but there is also a significant change in the levels of c-ski during wound healing. Its in vivo expression pattern and experiments in vitro suggest that c-ski may be involved in tissue repair by repressing Smad3 activity. Radiation can reduce c-ski and increase Smad3 expression, resulting in elevated Smad3 activity, resulting in diminished cell proliferation, cell apoptosis, and wound-healing delays.

摘要

C-ski是成纤维细胞增殖的复杂调节因子,也是Smad3重要的共抑制因子。虽然抑制Smad3活性可显著促进伤口愈合,因为Smad3介导转化生长因子-β抑制细胞增殖和诱导细胞凋亡的作用;但关于c-ski在伤口愈合过程中是否表达及其表达与伤口愈合的关系尚无报道。通过建立正常和辐射损伤伤口愈合的动物模型,并运用免疫组织化学、原位杂交和逆转录-聚合酶链反应,我们发现c-ski在受伤后表达,于第9天达到峰值,随后显著下降。C-ski存在于所有修复细胞中,在成纤维细胞中尤为突出。与对照侧相比,照射侧在伤后第3至9天c-ski表达较低,但在第15天较高,伤口愈合后无显著差异。Smad3的表达与c-ski相反,细胞增殖与c-ski表达相似。与对照侧相比,照射侧在第3至9天的凋亡指数显著更高。在体外,噻唑蓝结果显示c-ski可逆转Smad3对成纤维细胞增殖的抑制作用。流式细胞术分析发现c-ski还可减少Smad3转染诱导的成纤维细胞凋亡。这些结果表明,这种调节蛋白不仅有明显表达,而且在伤口愈合过程中c-ski水平也有显著变化。其体内表达模式和体外实验表明,c-ski可能通过抑制Smad3活性参与组织修复。辐射可降低c-ski并增加Smad3表达,导致Smad3活性升高,从而导致细胞增殖减少、细胞凋亡增加以及伤口愈合延迟。

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