Progressive HNF1A-MODY pathophysiology revealed by a translational mouse model.

IF 6.1 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Isaline Louvet, Ana Acosta-Montalvo, Chiara Saponaro, Maria Moreno-Lopez, Sana Douffi, Abdelkrim El Karchaoui, Gianni Pasquetti, Julien Thevenet, Nathalie Delalleau, Valery Gmyr, Paolo Giacobini, Stéphanie Espiard, Julie Kerr-Conte, François Pattou, Adrian Liston, Caroline Bonner
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Abstract

HNF1A-MODY, the most common monogenic diabetes, exhibits progressive β cell dysfunction, but existing mouse models fail to recapitulate human disease progression, limiting understanding of pathogenic mechanisms. We developed mice with heterozygous deletion of the Hnf1a transactivation domain (Hnf1a+/Δe4-10) to model human HNF1A haploinsufficiency, conducted cross-sectional metabolic characterization, and validated our findings in HNF1A-deficient human islets. Unlike previous models, Hnf1a+/Δe4-10 mice successfully recapitulated temporal HNF1A-MODY progression. Male mice developed sequential pathophysiology: early insulin resistance in young adults (7 weeks), followed by testosterone deficiency and fasting hyperglycemia in adult mice (10 weeks). Glucose intolerance emerged in middle-aged mice (30 weeks), progressing to multi-organ dysfunction in aged mice (44-70 weeks), characterized by elevated hepatic gluconeogenesis, impaired renal glucose handling, and hepatic steatosis/fibrosis. This dual pathophysiology involving β cell dysfunction and peripheral insulin resistance was associated with dysregulated hormone secretion from both α and β cells in aged mice (40-70 weeks). Human islet studies with HNF1A knockdown confirmed translational relevance, demonstrating reduced SGLT2 protein expression and inappropriate glucagon and insulin secretion. This work established a physiologically relevant HNF1A-MODY model, identified early insulin resistance as a key mechanism triggering hormonal dysfunction, and revealed HNF1A's role in multi-organ pathophysiology beyond traditional β cell dysfunction.

翻译小鼠模型揭示的进行性HNF1A-MODY病理生理。
HNF1A-MODY是最常见的单基因糖尿病,表现出进行性β细胞功能障碍,但现有的小鼠模型不能概括人类疾病的进展,限制了对致病机制的理解。我们开发了Hnf1a反激活域杂合缺失的小鼠(Hnf1a+/Δe4-10)来模拟人类Hnf1a单倍不全,进行了横断面代谢表征,并在Hnf1a缺陷的人类胰岛中验证了我们的发现。与之前的模型不同,Hnf1a+/Δe4-10小鼠成功重现了颞叶Hnf1a - mody进展。雄性小鼠发生顺序病理生理:年轻成年小鼠早期胰岛素抵抗(7周),随后成年小鼠睾酮缺乏和空腹高血糖(10周)。中年小鼠(30周)出现葡萄糖耐受不良,老年小鼠(44-70周)发展为多器官功能障碍,其特征是肝脏糖异生升高,肾脏葡萄糖处理受损,肝脏脂肪变性/纤维化。这种涉及β细胞功能障碍和外周胰岛素抵抗的双重病理生理与老年小鼠(40-70周)α和β细胞激素分泌失调有关。HNF1A敲低的人胰岛研究证实了翻译相关性,显示SGLT2蛋白表达降低,胰高血糖素和胰岛素分泌不正常。本工作建立了生理相关的HNF1A- mody模型,确定了早期胰岛素抵抗是触发激素功能障碍的关键机制,揭示了HNF1A在传统β细胞功能障碍之外的多器官病理生理作用。
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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来源期刊
JCI insight
JCI insight Medicine-General Medicine
CiteScore
13.70
自引率
1.20%
发文量
543
审稿时长
6 weeks
期刊介绍: JCI Insight is a Gold Open Access journal with a 2022 Impact Factor of 8.0. It publishes high-quality studies in various biomedical specialties, such as autoimmunity, gastroenterology, immunology, metabolism, nephrology, neuroscience, oncology, pulmonology, and vascular biology. The journal focuses on clinically relevant basic and translational research that contributes to the understanding of disease biology and treatment. JCI Insight is self-published by the American Society for Clinical Investigation (ASCI), a nonprofit honor organization of physician-scientists founded in 1908, and it helps fulfill the ASCI's mission to advance medical science through the publication of clinically relevant research reports.
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