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Akt1 and Akt2 Isoforms Play Distinct Roles in Regulating the Development of Inflammation and Fibrosis Associated with Alcoholic Liver Disease

机译:Akt1和Akt2亚型在调节与酒精性肝病相关的炎症和纤维化的发展中起不同的作用

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摘要

Akt kinase isoforms (Akt1, Akt2, and Akt3) have generally been thought to play overlapping roles in phosphoinositide 3-kinase (PI3K)-mediated-signaling. However, recent studies have suggested that they display isoform-specific roles in muscle and fat. To determine whether such isoform-specificity is observed with respect to alcoholic liver disease (ALD) progression, we examined the role of Akt1, Akt2, and Akt3 in hepatic inflammation, and pro-fibrogenic proliferation and migration using Kupffer cells, hepatic stellate cells (HSC), and hepatocytes in an ethanol and lipopolysaccharide (LPS)-induced two-hit model in vitro and in vivo. We determined that siRNA-directed silencing of Akt2, but not Akt1, significantly suppressed cell inflammatory markers in HSC and Kupffer cells. Although both Akt1 and Akt2 inhibited cell proliferation in HSC, only Akt2 inhibited cell migration. Both Akt1 and Akt2, but not Akt3, inhibited fibrogenesis in hepatocytes and HSC. In addition, our in vivo results show that administration of chronic ethanol, binge ethanol and LPS (EBL) in wild-type C57BL/6 mice activated all three Akt isoforms with concomitant increases in activated forms of phosphoinositide dependent kinase-1 (PDK1), mammalian target-of-rapamycin complex 2 (mTORC2), and PI3K, resulting in upregulation in expression of inflammatory, proliferative, and fibrogenic genes. Moreover, pharmacological blocking of Akt2, but not Akt1, inhibited EBL-induced inflammation while blocking of both Akt1 and Akt2 inhibited pro-fibrogenic marker expression and progression of fibrosis. Our findings indicate that Akt isoforms play unique roles in inflammation, cell proliferation, migration, and fibrogenesis during EBL-induced liver injury. Thus, close attention must be paid when targeting all Akt isoforms as a therapeutic intervention.
机译:通常认为Akt激酶同工型(Akt1,Akt2和Akt3)在磷酸肌醇3激酶(PI3K)介导的信号传导中起重叠作用。但是,最近的研究表明,它们在肌肉和脂肪中表现出同工型特异性作用。为了确定是否在酒精性肝病(ALD)进展方面观察到这种同工型特异性,我们使用Kupffer细胞,肝星状细胞检查了Akt1,Akt2和Akt3在肝炎症以及促纤维化增殖和迁移中的作用( HSC)和乙醇和脂多糖(LPS)诱导的体外和体内两次打击模型中的肝细胞。我们确定,Akt2而不是Akt1的siRNA定向沉默可以显着抑制HSC和Kupffer细胞中的细胞炎症标记。尽管Akt1和Akt2均抑制HSC中的细胞增殖,但只有Akt2抑制细胞迁移。 Akt1和Akt2,但不是Akt3,均抑制肝细胞和HSC中的纤维化。此外,我们的体内结果显示,在野生型C57BL / 6小鼠中施用慢性乙醇,暴饮乙醇和LPS(EBL)激活了所有三种Akt亚型,同时磷酸肌醇依赖性激酶1(PDK1)的激活形式增加,哺乳动物雷帕霉素靶标复合物2(mTORC2)和PI3K,导致炎症,增生和纤维生成基因表达上调。此外,药理学上阻断Akt2而不是Akt1抑制了EBL诱导的炎症,而阻断Akt1和Akt2则抑制了促纤维化标志物的表达和纤维化的进程。我们的发现表明,Akt亚型在EBL诱导的肝损伤过程中在炎症,细胞增殖,迁移和纤维生成中起独特作用。因此,在靶向所有Akt亚型作为治疗干预措施时,必须密切注意。

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