基于人类诱导多能干细胞的脂质代谢相关 TM6SF2 E167K 变体肝脏模型。

IF 12.9 1区 医学 Q1 GASTROENTEROLOGY & HEPATOLOGY Hepatology Pub Date : 2024-08-27 DOI:10.1097/HEP.0000000000001065
Lanuza Ap Faccioli, Yiyue Sun, Olamide Animasahun, Takashi Motomura, Zhenghao Liu, Takeshi Kurihara, Zhiping Hu, Bo Yang, Zeliha Cetin, Annalisa M Baratta, Ajay Shankaran, Minal Nenwani, Leyla Nurcihan Altay, Linqi Huang, Noah Meurs, Jonathan Franks, Donna Stolz, Dillon C Gavlock, Mark T Miedel, Alina Ostrowska, Rodrigo M Florentino, Ira J Fox, Deepak Nagrath, Alejandro Soto-Gutierrez
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引用次数: 0

摘要

背景和目的:TM6SF2 rs58542926 (E167K)与代谢功能障碍相关性脂肪性肝病(MASLD)发病率的增加有关。相互矛盾的小鼠研究结果突出表明,需要一个人类模型来了解这一突变的影响。本研究旨在创建一个可靠的人类体外模型并确定其特征,以模拟 TM6SF2-E167K 突变的影响,用于未来的研究:我们对来自健康个体的人类诱导多能干细胞(iPSC)进行了基因编辑,以创建具有TM6SF2-E167K突变的细胞。肝细胞定向分化后,我们观察到TM6SF2蛋白表达减少,细胞内脂滴和总胆固醇增加,VLDL分泌减少。转录组学显示,参与脂质、脂肪酸和胆固醇转运、通量和氧化的基因上调。全球脂质组学显示,与ER应激、线粒体功能障碍、细胞凋亡和脂质代谢相关的脂质类别增加。此外,TM6SF2-E167K 基因突变会产生促炎症表型,并伴有线粒体和 ER 压力的迹象。重要的是,通过促进携带TM6SF2-E167K突变的肝细胞ER内的蛋白质折叠,VLDL分泌和ER应激标志物得到了改善:我们的研究结果表明,由携带 TM6SF2-E167K 的 iPSCs 生成的诱导肝细胞再现了在来自 TM6SF2 突变个体的人类肝细胞中观察到的效果。这项研究描述了一个体外模型的特征,该模型可用作鉴定潜在临床靶点的平台,并强调了以蛋白质错误折叠为靶点来缓解ER应激和减轻TM6SF2-E167K突变对肝脏脂质代谢的有害影响的治疗潜力。
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Human induced pluripotent stem cell based hepatic-modeling of lipid metabolism associated TM6SF2 E167K variant.

Background and aims: TM6SF2 rs58542926 (E167K) is related to increased prevalence of metabolic dysfunction-associated steatotic liver disease (MASLD). Conflicting mouse study results highlight the need for a human model to understand this mutation's impact. This study aims to create and characterize a reliable human in vitro model to mimic the effects of the TM6SF2-E167K mutation for future studies.

Approach and results: We used gene editing on human human-induced pluripotent stem cells (iPSC) from a healthy individual to create cells with the TM6SF2-E167K mutation. After hepatocyte directed differentiation, we observed decreased TM6SF2 protein expression, increased intracellular lipid droplets and total cholesterol in addition to reduced VLDL secretion. Transcriptomics revealed upregulation of genes involved in lipid, fatty acid, and cholesterol transport, flux, and oxidation. Global lipidomics showed increased lipid classes associated with ER stress, mitochondrial dysfunction, apoptosis, and lipid metabolism. Additionally, the TM6SF2-E167K mutation conferred a pro-inflammatory phenotype with signs of mitochondria and ER stress. Importantly, by facilitating protein folding within the ER of hepatocytes carrying TM6SF2-E167K mutation, VLDL secretion and ER stress markers improved.

Conclusions: Our findings indicate that induced hepatocytes generated from iPSCs carrying the TM6SF2-E167K recapitulate the effects observed in human hepatocytes from individuals with the TM6SF2 mutation. This study characterizes an in vitro model that can be used as a platform to identify potential clinical targets and highlights the therapeutic potential of targeting protein misfolding to alleviate ER stress and mitigate the detrimental effects of the TM6SF2-E167K mutation on hepatic lipid metabolism.

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来源期刊
Hepatology
Hepatology 医学-胃肠肝病学
CiteScore
27.50
自引率
3.70%
发文量
609
审稿时长
1 months
期刊介绍: HEPATOLOGY is recognized as the leading publication in the field of liver disease. It features original, peer-reviewed articles covering various aspects of liver structure, function, and disease. The journal's distinguished Editorial Board carefully selects the best articles each month, focusing on topics including immunology, chronic hepatitis, viral hepatitis, cirrhosis, genetic and metabolic liver diseases, liver cancer, and drug metabolism.
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