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肝再生需要 Yap1-TGFβ 依赖的肝细胞上皮-间充质转化。

Liver regeneration requires Yap1-TGFβ-dependent epithelial-mesenchymal transition in hepatocytes.

机构信息

Division of Gastroenterology, Department of Medicine, Duke University School of Medicine, Durham, NC, USA.

Division of Gastroenterology, Department of Medicine, Duke University School of Medicine, Durham, NC, USA.

出版信息

J Hepatol. 2018 Aug;69(2):359-367. doi: 10.1016/j.jhep.2018.05.008. Epub 2018 May 23.

Abstract

BACKGROUND & AIMS: Chronic failure of mechanisms that promote effective regeneration of dead hepatocytes causes replacement of functional hepatic parenchyma with fibrous scar tissue, ultimately resulting in cirrhosis. Therefore, defining and optimizing mechanisms that orchestrate effective regeneration might prevent cirrhosis. We hypothesized that effective regeneration of injured livers requires hepatocytes to evade the growth-inhibitory actions of TGFβ, since TGFβ signaling inhibits mature hepatocyte growth but drives cirrhosis pathogenesis.

METHODS

Wild-type mice underwent 70% partial hepatectomy (PH); TGFβ expression and signaling were evaluated in intact tissue and primary hepatocytes before, during, and after the period of maximal hepatocyte proliferation that occurs from 24-72 h after PH. To determine the role of Yap1 in regulating TGFβ signaling in hepatocytes, studies were repeated after selectively deleting Yap1 from hepatocytes of Yap1 mice.

RESULTS

TGFβ expression and hepatocyte nuclear accumulation of pSmad2 and Yap1 increased in parallel with hepatocyte proliferative activity after PH. Proliferative hepatocytes also upregulated Snai1, a pSmad2 target gene that promotes epithelial-to-mesenchymal transition (EMT), suppressed epithelial genes, induced myofibroblast markers, and produced collagen 1α1. Deleting Yap1 from hepatocytes blocked their nuclear accumulation of pSmad2 and EMT-like response, as well as their proliferation.

CONCLUSION

Interactions between the TGFβ and Hippo-Yap signaling pathways stimulate hepatocytes to undergo an EMT-like response that is necessary for them to grow in a TGFβ-enriched microenvironment and regenerate injured livers.

LAY SUMMARY

The adult liver has an extraordinary ability to regenerate after injury despite the accumulation of scar-forming factors that normally block the proliferation and reduce the survival of residual liver cells. We discovered that liver cells manage to escape these growth-inhibitory influences by transiently becoming more like fibroblasts themselves. They do this by reactivating programs that are known to drive tissue growth during fetal development and in many cancers. Understanding how the liver can control programs that are involved in scarring and cancer may help in the development of new treatments for cirrhosis and liver cancer.

摘要

背景与目的

促进死亡肝细胞有效再生的机制慢性衰竭导致功能性肝实质被纤维瘢痕组织替代,最终导致肝硬化。因此,定义和优化协调有效再生的机制可能预防肝硬化。我们假设,受损肝脏的有效再生需要肝细胞逃避 TGFβ 的生长抑制作用,因为 TGFβ 信号抑制成熟肝细胞的生长,但驱动肝硬化发病机制。

方法

野生型小鼠接受 70%部分肝切除术(PH);在 PH 后 24-72 小时发生的最大肝细胞增殖期间,在完整组织和原代肝细胞中评估 TGFβ 的表达和信号。为了确定 Yap1 在调节肝细胞中 TGFβ 信号的作用,在 Yap1 小鼠的肝细胞中选择性敲除 yap1 后重复了这些研究。

结果

TGFβ的表达和肝细胞核中 pSmad2 和 yap1 的积累与 PH 后肝细胞的增殖活性平行增加。增殖肝细胞还上调了 Snai1,Smad2 的一个靶基因,促进上皮间质转化(EMT),抑制上皮基因,诱导成肌纤维细胞标志物,并产生胶原 1α1。从肝细胞中敲除 yap1 阻断了它们的 Smad2 核积累和 EMT 样反应,以及它们的增殖。

结论

TGFβ 和 Hippo-Yap 信号通路之间的相互作用刺激肝细胞经历 EMT 样反应,这对于它们在 TGFβ 丰富的微环境中生长和再生受损肝脏是必要的。

概要

尽管积累了通常阻止剩余肝细胞增殖和存活的瘢痕形成因子,但成年肝脏在受伤后仍具有非凡的再生能力。我们发现,肝细胞通过短暂地变得更像成纤维细胞本身,从而设法逃避这些生长抑制作用。它们通过重新激活已知在胎儿发育和许多癌症中驱动组织生长的程序来实现这一点。了解肝脏如何控制参与瘢痕形成和癌症的程序可能有助于开发治疗肝硬化和肝癌的新方法。

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