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The NF-κB Subunit RelA/p65 Is Dispensable for Successful Liver Regeneration after Partial Hepatectomy in Mice

机译:NF-κB亚基RelA / p65对小鼠部分肝切除术后成功的肝再生至关重要

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Background The transcription factor NF-κB consisting of the subunits RelA/p65 and p50 is known to be quickly activated after partial hepatectomy (PH), the functional relevance of which is still a matter of debate. Current concepts suggest that activation of NF-κB is especially critical in non-parenchymal cells to produce cytokines (TNF, IL-6) to adequately prime hepatocytes to proliferate after PH, while NF-κB within hepatocytes mainly bears cytoprotective functions. Methods To study the role of the NF-κB pathway in different liver cell compartments, we generated conditional knockout mice in which the transactivating NF-κB subunit RelA/p65 can be inactivated specifically in hepatocytes (RelaF/FAlbCre) or both in hepatocytes plus non-parenchymal cells including Kupffer cells (RelaF/FMxCre). 2/3 and 80% PH were performed in controls (RelaF/F) and conditional knockout mice (RelaF/FAlbCre and RelaF/FMxCre) and analyzed for regeneration. Results Hepatocyte-specific deletion of RelA/p65 in RelaF/FAlbCre mice resulted in an accelerated cell cycle progression without altering liver mass regeneration after 2/3 PH. Surprisingly, hepatocyte apoptosis or liver damage were not enhanced in RelaF/FAlbCre mice, even when performing 80% PH. The additional inactivation of RelA/p65 in non-parenchymal cells in RelaF/FMxCre mice reversed the small proliferative advantage observed after hepatocyte-specific deletion of RelA/p65 so that RelaF/FMxCre mice displayed normal cell cycle progression, DNA-synthesis and liver mass regeneration. Conclusion The NF-κB subunit RelA/p65 fulfills opposite functions in different liver cell compartments in liver regeneration after PH. However, the effects observed after conditional deletion of RelA/p65 are small and do not alter liver mass regeneration after PH. We therefore do not consider RelA/p65-containing canonical NF-κB signalling to be essential for successful liver regeneration after PH.
机译:背景已知由部分RelA / p65和p50亚基组成的转录因子NF-κB在部分肝切除术(PH)后迅速被激活,其功能相关性尚有争议。当前的观念表明,NF-κB的激活在非实质细胞中产生细胞因子(TNF,IL-6)以在PH后充分引发肝细胞增殖,这一点尤其重要,而肝细胞内的NF-κB主要承担细胞保护功能。方法为了研究NF-κB通路在不同肝细胞区室中的作用,我们建立了条件敲除小鼠,其中反式激活NF-κB亚基RelA / p65可以在肝细胞(RelaF / FAlbCre)中特异性失活,或者在肝细胞和非肝细胞中均失活-实质细胞,包括库普弗细胞(RelaF / FMxCre)。在对照(RelaF / F)和条件性基因敲除小鼠(RelaF / FAlbCre和RelaF / FMxCre)中进行2/3和80%的PH,并进行再生分析。结果RelaF / FAlbCre小鼠中肝细胞特异性RelA / p65的缺失导致细胞周期进程加快,而在2/3 PH后不改变肝脏的质量再生。令人惊讶的是,即使在执行80%PH的情况下,RelaF / FAlbCre小鼠的肝细胞凋亡或肝损伤也没有增强。 RelaF / FMxCre小鼠非实质细胞中RelA / p65的额外失活逆转了肝细胞特异性删除RelA / p65后观察到的小增殖优势,因此RelaF / FMxCre小鼠显示出正常的细胞周期进程,DNA合成和肝质量再生。结论PH后,肝再生中NF-κB亚基RelA / p65在不同的肝细胞区室中具有相反的功能。但是,有条件地删除RelA / p65后观察到的效果很小,并且不会改变PH后的肝脏质量再生。因此,我们不认为含RelA / p65的规范性NF-κB信号对于PH后成功的肝再生至关重要。

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