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炎症、坏死性凋亡和 YAP 通路的协同作用导致叶酸缺乏诱导的肝细胞增大。

The cooperative interplay among inflammation, necroptosis and YAP pathway contributes to the folate deficiency-induced liver cells enlargement.

机构信息

The Institute of Basic Medical Science, College of Medicine, National Cheng Kung University, Tainan, Taiwan.

International Center for Wound Repair and Regeneration, National Cheng Kung University, Tainan, Taiwan.

出版信息

Cell Mol Life Sci. 2022 Jul 5;79(8):397. doi: 10.1007/s00018-022-04425-9.

Abstract

Change in cell size may bring in profound impact to cell function and survival, hence the integrity of the organs consisting of those cells. Nevertheless, how cell size is regulated remains incompletely understood. We used the fluorescent zebrafish transgenic line Tg-GGH/LR that displays inducible folate deficiency (FD) and hepatomegaly upon FD induction as in vivo model. We found that FD caused hepatocytes enlargement and increased liver stiffness, which could not be prevented by nucleotides supplementations. Both in vitro and in vivo studies indicated that RIPK3/MLKL-dependent necroptotic pathway and Hippo signaling interactively participated in this FD-induced hepatocytic enlargement in a dual chronological and cooperative manner. FD also induced hepatic inflammation, which convenes a dialog of positive feedback loop between necroptotic and Hippo pathways. The increased MMP13 expression in response to FD elevated TNFα level and further aggravated the hepatocyte enlargement. Meanwhile, F-actin was circumferentially re-allocated at the edge under cell membrane in response to FD. Our results substantiate the interplay among intracellular folate status, pathways regulation, inflammatory responses, actin cytoskeleton and cell volume control, which can be best observed with in vivo platform. Our data also support the use of this Tg-GGH/LR transgenic line for the mechanistical and therapeutic research for the pathologic conditions related to cell size alteration.

摘要

细胞大小的改变可能会对细胞功能和存活产生深远的影响,从而影响由这些细胞组成的器官的完整性。然而,细胞大小是如何调节的仍然不完全清楚。我们使用了荧光斑马鱼转基因系 Tg-GGH/LR,该系在叶酸缺乏(FD)诱导时表现出可诱导的叶酸缺乏和肝肿大。我们发现 FD 导致肝细胞增大和肝硬度增加,核苷酸补充不能预防这种情况。体内和体外研究均表明,RIPK3/MLKL 依赖性坏死性通路和 Hippo 信号通路以双重时间和协作的方式相互作用,参与了 FD 诱导的肝实质细胞增大。FD 还诱导肝炎症,这在坏死性和 Hippo 通路之间形成了正反馈回路的对话。对 FD 的反应增加的 MMP13 表达升高了 TNFα 水平,并进一步加重了肝细胞增大。同时,FD 导致细胞内叶酸状态、通路调节、炎症反应、肌动蛋白细胞骨架和细胞体积控制之间的相互作用,这在体内平台上可以得到最好的观察。我们的数据还支持使用这种 Tg-GGH/LR 转基因系进行与细胞大小改变相关的病理状况的机制和治疗研究。

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