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GATA4 在横隔中胚层中的缺失可促进小鼠肝纤维化。

GATA4 loss in the septum transversum mesenchyme promotes liver fibrosis in mice.

机构信息

Centro Andaluz de Biología Molecular y Medicina Regenerativa (CABIMER), Sevilla, Spain; Centro de Investigación Biomédica en Red de Diabetes y Enfermedades Metabólicas Asociadas (CIBERDEM), Barcelona, Spain.

出版信息

Hepatology. 2014 Jun;59(6):2358-70. doi: 10.1002/hep.27005. Epub 2014 Apr 29.

Abstract

UNLABELLED

The zinc finger transcription factor GATA4 controls specification and differentiation of multiple cell types during embryonic development. In mouse embryonic liver, Gata4 is expressed in the endodermal hepatic bud and in the adjacent mesenchyme of the septum transversum. Previous studies have shown that Gata4 inactivation impairs liver formation. However, whether these defects are caused by loss of Gata4 in the hepatic endoderm or in the septum transversum mesenchyme remains to be determined. In this study, we have investigated the role of mesenchymal GATA4 activity in liver formation. We have conditionally inactivated Gata4 in the septum transversum mesenchyme and its derivatives by using Cre/loxP technology. We have generated a mouse transgenic Cre line, in which expression of Cre recombinase is controlled by a previously identified distal Gata4 enhancer. Conditional inactivation of Gata4 in hepatic mesenchymal cells led to embryonic lethality around mouse embryonic stage 13.5, likely as a consequence of fetal anemia. Gata4 knockout fetal livers exhibited reduced size, advanced fibrosis, accumulation of extracellular matrix components and hepatic stellate cell (HSC) activation. Haploinsufficiency of Gata4 accelerated CCl4 -induced liver fibrosis in adult mice. Moreover, Gata4 expression was dramatically reduced in advanced hepatic fibrosis and cirrhosis in humans.

CONCLUSIONS

Our data demonstrate that mesenchymal GATA4 activity regulates HSC activation and inhibits the liver fibrogenic process.

摘要

未标记

锌指转录因子 GATA4 在胚胎发育过程中控制多种细胞类型的特化和分化。在小鼠胚胎肝脏中,Gata4 在内胚层肝芽和横隔的相邻间质中表达。先前的研究表明,Gata4 的失活会损害肝脏的形成。然而,这些缺陷是由于肝内胚层还是横隔间质中 Gata4 的丢失引起的,仍有待确定。在这项研究中,我们研究了间质 GATA4 活性在肝脏形成中的作用。我们使用 Cre/loxP 技术条件性地使横隔间质及其衍生物中的 Gata4 失活。我们生成了一种小鼠转基因 Cre 系,其中 Cre 重组酶的表达受先前鉴定的远端 Gata4 增强子控制。在肝间充质细胞中条件性地使 Gata4 失活会导致小鼠胚胎 13.5 左右的胚胎致死,可能是胎儿贫血的结果。Gata4 敲除胎儿肝脏体积减小,纤维化程度加重,细胞外基质成分积累,肝星状细胞(HSC)激活。Gata4 的杂合不足加速了 CCl4 诱导的成年小鼠肝纤维化。此外,Gata4 的表达在人类晚期肝纤维化和肝硬化中显著降低。

结论

我们的数据表明,间质 GATA4 活性调节 HSC 激活并抑制肝脏纤维化过程。

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