肝脏再生终止期的遗传调控。

Ingvild E Nygård, Kim E Mortensen, Jakob Hedegaard, Lene N Conley, Trine Kalstad, Christian Bendixen, Arthur Revhaug
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引用次数: 23

摘要

背景:肝部分切除术(PHx)后,当肝脏质量/体重比恢复正常2.5%时,肝脏再生过程终止。为了研究肝脏再生终止期的遗传调控,我们在猪模型中进行了60%的PHx。在切除时,三周后和第六周终止时分别进行肝脏活检。利用猪寡核苷酸芯片获得基因表达谱。我们的研究揭示了调节细胞周期、细胞凋亡和血管生成的基因之间的相互作用,以及转化生长因子-β (TGF-β)信号在肝脏再生结束中的作用。结果:微阵列分析显示,在再生末期,调控细胞凋亡的基因占主导地位。Caspase募集结构域-含蛋白11 (CARD11)在PHx后6周上调,表明此时Caspase系统参与其中。锌指蛋白(ZNF490)基因对细胞周期进程有潜在的负面影响,仅在PHx后3周和6周上调,表明此时起核心作用。TGF-β的调节在肝再生终止期未受显著影响。Vasohibin 2 (VASH2)在再生结束时下调,可能表明在阻止持续血管化过程中起作用。结论:CARD11、ZNF490和VASH2在肝再生终止期存在差异表达。缺乏TGF-β上调表明TGF-β信号传导不是终止肝脏再生所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The genetic regulation of the terminating phase of liver regeneration.

The genetic regulation of the terminating phase of liver regeneration.

The genetic regulation of the terminating phase of liver regeneration.

The genetic regulation of the terminating phase of liver regeneration.

Unlabelled:

Background: After partial hepatectomy (PHx), the liver regeneration process terminates when the normal liver-mass/body-weight ratio of 2.5% has been re-established. To investigate the genetic regulation of the terminating phase of liver regeneration, we performed a 60% PHx in a porcine model. Liver biopsies were taken at the time of resection, after three weeks and upon termination the sixth week. Gene expression profiles were obtained using porcine oligonucleotide microarrays. Our study reveals the interactions between genes regulating the cell cycle, apoptosis and angiogenesis, and the role of Transforming Growth Factor-β (TGF-β) signalling towards the end of liver regeneration.

Results: Microarray analysis revealed a dominance of genes regulating apoptosis towards the end of regeneration. Caspase Recruitment Domain-Containing Protein 11 (CARD11) was up-regulated six weeks after PHx, suggesting the involvement of the caspase system at this time. Zinc Finger Protein (ZNF490) gene, with a potential negative effect on cell cycle progression, was only up-regulated at three and six weeks after PHx indicating a central role at this time. TGF-β regulation was not found to be significantly affected in the terminating phase of liver regeneration. Vasohibin 2 (VASH2) was down-regulated towards the end of regeneration, and may indicate a role in preventing a continued vascularization process.

Conclusions: CARD11, ZNF490 and VASH2 are differentially expressed in the termination phase of liver regeneration. The lack of TGF-β up-regulation suggests that signalling by TGF-β is not required for termination of liver regeneration.

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