Medical School, Nanjing University, Nanjing 210093, China.
Research Center for Life Sciences Computing, Zhejiang Laboratory, Hangzhou 311100, China.
Dis Model Mech. 2024 Sep 1;17(9). doi: 10.1242/dmm.050748. Epub 2024 Sep 30.
Being a vital cellular process, coat protein complex II (COPII) vesicle trafficking has been found to play a crucial role in liver metabolism. However, its functions and the underlying mechanisms in systemic metabolic homeostasis have not been fully understood. Here, with a newly identified gene trap zebrafish line (sec31anju221), we show that compromised COPII vesicle trafficking leads to biphasic abnormal hepatic metabolism. During the larval stage, deficiency of COPII-mediated trafficking leads to activation of the unfolded protein response and the development of hepatic steatosis. By using epistasis analysis, we found that the eIF2α-ATF4 pathway serves as the primary effector for liver steatosis. In adult sec31anju221 fish, the hepatosteatosis was reversed and the phenotype switched to glycogenic hepatopathy. Proteomic profiling and biochemical assays indicate that sec31anju221 fish are in a state of hypothyroidism. Moreover, our study shows that thyroid hormone treatment alleviates the metabolic defects. This study provides insights into processes of liver diseases associated with vesicle trafficking impairments and expands our understanding of the pathological interplay between thyroid and liver.
作为一种重要的细胞过程,COPII 囊泡运输已被发现在肝脏代谢中发挥关键作用。然而,其在全身代谢稳态中的功能和潜在机制尚未完全阐明。在这里,我们利用一个新鉴定的基因捕获斑马鱼系(sec31anju221),显示出 COPII 囊泡运输受损会导致肝脏代谢的双相异常。在幼虫阶段,COPII 介导的运输缺陷会导致未折叠蛋白反应的激活和肝脂肪变性的发展。通过上位性分析,我们发现 eIF2α-ATF4 途径是肝脂肪变性的主要效应因子。在成年 sec31anju221 鱼中,肝脂肪变性被逆转,表型转变为糖生成性肝病变。蛋白质组学分析和生化测定表明,sec31anju221 鱼处于甲状腺功能减退状态。此外,我们的研究表明甲状腺激素治疗可减轻代谢缺陷。本研究为与囊泡运输损伤相关的肝脏疾病过程提供了新的认识,并扩展了我们对甲状腺和肝脏之间病理相互作用的理解。