Stat3调节斑马鱼肝脏祖细胞驱动的肝脏再生。

Q2 Biochemistry, Genetics and Molecular Biology Gene expression Pub Date : 2018-08-22 Epub Date: 2018-04-24 DOI:10.3727/105221618X15242506133273
Mehwish Khaliq, Sungjin Ko, Yinzi Liu, Hualin Wang, Yonghua Sun, Lila Solnica-Krezel, Donghun Shin
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引用次数: 14

摘要

肝损伤后,再生表现为(1)肝细胞增殖以恢复丢失的肝细胞质量,或(2)如果肝细胞增殖受损,胆管上皮细胞(BECs)去分化为肝祖细胞(LPCs),随后分化为肝细胞。在Tg(fabp10a:CFP-NTR)斑马鱼肝细胞的药物消融导致严重肝损伤后,信号转导子和转录激活子3(Stat3)及其靶基因和负调控因子socs3a在再生肝脏中上调。使用Stat3抑制剂JSI-124和S3I-201,或Stat3斑马鱼突变体,我们研究了Stat3在LPC驱动的肝脏再生中的作用。尽管Stat3的抑制降低了再生肝脏的大小,但BEC去分化为LPCs不受影响。然而,再生肝脏显示出LPC向肝细胞分化的延迟和BEC数量的显著减少。虽然没有检测到细胞死亡的差异,但Stat3抑制显著降低了LPC的增殖。值得注意的是,stat3突变体表型复制了stat3化学抑制剂的作用,尽管突变体表型是不完全渗透的。有趣的是,socs3a突变体的一个子集在再生肝脏中也显示出较低数量的BEC。我们得出结论,Stat3/Socs3a通路对于LPC向肝细胞分化的适当时机以及在LPC驱动的肝再生过程中建立适当数量的BECs是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Stat3 Regulates Liver Progenitor Cell-Driven Liver Regeneration in Zebrafish.

After liver injury, regeneration manifests as either (1) hepatocytes proliferating to restore the lost hepatocyte mass or (2) if hepatocyte proliferation is compromised, biliary epithelial cells (BECs) dedifferentiating into liver progenitor cells (LPCs), which subsequently differentiate into hepatocytes. Following pharmacogenetic ablation of hepatocytes in Tg(fabp10a:CFP-NTR) zebrafish, resulting in severe liver injury, signal transducer and activator of transcription 3 (Stat3) and its target gene and negative regulator, socs3a, were upregulated in regenerating livers. Using either Stat3 inhibitors, JSI-124 and S3I-201, or stat3 zebrafish mutants, we investigated the role of Stat3 in LPC-driven liver regeneration. Although Stat3 suppression reduced the size of regenerating livers, BEC dedifferentiation into LPCs was unaffected. However, regenerating livers displayed a delay in LPC-to-hepatocyte differentiation and a significant reduction in the number of BECs. While no difference in cell death was detected, Stat3 inhibition significantly reduced LPC proliferation. Notably, stat3 mutants phenocopied the effects of Stat3 chemical inhibitors, although the mutant phenotype was incompletely penetrant. Intriguingly, a subset of socs3a mutants also displayed a lower number of BECs in regenerating livers. We conclude that the Stat3/Socs3a pathway is necessary for the proper timing of LPC-to-hepatocyte differentiation and establishing the proper number of BECs during LPC-driven liver regeneration.

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来源期刊
Gene expression
Gene expression 生物-生物工程与应用微生物
CiteScore
3.80
自引率
0.00%
发文量
3
审稿时长
>12 weeks
期刊介绍: Gene Expression, The Journal of Liver Research will publish articles in all aspects of hepatology. Hepatology, as a research discipline, has seen unprecedented growth especially in the cellular and molecular mechanisms of hepatic health and disease, which continues to have a major impact on understanding liver development, stem cells, carcinogenesis, tissue engineering, injury, repair, regeneration, immunology, metabolism, fibrosis, and transplantation. Continued research and improved understanding in these areas will have a meaningful impact on liver disease prevention, diagnosis, and treatment. The existing journal Gene Expression has expanded its focus to become Gene Expression, The Journal of Liver Research to meet this growing demand. In its revised and expanded scope, the journal will publish high-impact original articles, reviews, short but complete articles, and special articles (editorials, commentaries, opinions) on all aspects of hepatology, making it a unique and invaluable resource for readers interested in this field. The expanded team, led by an Editor-in-Chief who is uniquely qualified and a renowned expert, along with a dynamic and functional editorial board, is determined to make this a premier journal in the field of hepatology.
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