Department of Pediatrics, Washington University School of Medicine, St. Louis, MO, USA.
Hepatology. 2013 May;57(5):1742-51. doi: 10.1002/hep.26206.
The studies reported here were undertaken to define the regulation and functional importance of zinc-dependent histone deacetylase (Zn-HDAC) activity during liver regeneration using the mouse partial hepatectomy (PH) model. The results showed that hepatic HDAC activity was significantly increased in nuclear and cytoplasmic fractions following PH. Further analyses showed isoform-specific effects of PH on HDAC messenger RNA (mRNA) and protein expression, with increased expression of the class I HDACs, 1 and 8, and class II HDAC4 in regenerating liver. Hepatic expression of (class II) HDAC5 was unchanged after PH; however, HDAC5 exhibited transient nuclear accumulation in regenerating liver. These changes in hepatic HDAC expression, subcellular localization, and activity coincided with diminished histone acetylation in regenerating liver. The significance of these events was investigated by determining the effects of suberoylanilide hydroxyamic acid (SAHA, a specific inhibitor of Zn-HDAC activity) on hepatic regeneration. The results showed that SAHA treatment suppressed the effects of PH on histone deacetylation and hepatocellular bromodeoxyuridine (BrdU) incorporation. Further examination showed that SAHA blunted hepatic expression and activation of cell cycle signals downstream of induction of cyclin D1 expression in mice subjected to PH.
The data reported here demonstrate isoform-specific regulation of Zn-HDAC expression, subcellular localization, and activity in regenerating liver. These studies also indicate that HDAC activity promotes liver regeneration by regulating hepatocellular cell cycle progression at a step downstream of cyclin D1 induction.
本研究旨在利用小鼠部分肝切除术(PH)模型,阐明锌依赖的组蛋白去乙酰化酶(Zn-HDAC)活性在肝再生过程中的调控及其功能重要性。结果表明,PH 后肝组织的 HDAC 活性在核和胞质部分均显著增加。进一步分析表明,PH 对 HDAC 信使 RNA(mRNA)和蛋白表达具有亚型特异性影响,其中 I 类 HDACs 的 1 和 8 以及 II 类 HDAC4 在再生肝中表达增加。PH 后肝组织(II 类)HDAC5 的表达不变;然而,HDAC5 在再生肝中表现出短暂的核内聚集。这些肝 HDAC 表达、亚细胞定位和活性的变化与再生肝中组蛋白乙酰化的减少相一致。通过测定丙戊酸(一种特异性 Zn-HDAC 活性抑制剂)对肝再生的影响,研究了这些事件的意义。结果表明,SAHA 处理抑制了 PH 对组蛋白去乙酰化和肝细胞溴脱氧尿苷(BrdU)掺入的影响。进一步的研究表明,SAHA 减弱了 PH 诱导 cyclin D1 表达后下游细胞周期信号在小鼠肝组织中的表达和激活。
本研究报告的数据表明,Zn-HDAC 在再生肝中的表达、亚细胞定位和活性具有亚型特异性调节。这些研究还表明,HDAC 活性通过调节 cyclin D1 诱导后肝细胞周期进程,促进肝再生。