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Prox1上的禁食敏感型类泛素化修饰开关控制肝脏胆固醇代谢。

Fasting-sensitive SUMO-switch on Prox1 controls hepatic cholesterol metabolism.

作者信息

Alfaro Ana Jimena, Dittner Claudia, Becker Janina, Loft Anne, Mhamane Amit, Maida Adriano, Georgiadi Anastasia, Tsokanos Foivos-Filippos, Klepac Katarina, Molocea Claudia-Eveline, El-Merahbi Rabih, Motzler Karsten, Geppert Julia, Karikari Rhoda Anane, Szendrödi Julia, Feuchtinger Annette, Hofmann Susanna, Karaca Samir, Urlaub Henning, Berriel Diaz Mauricio, Melchior Frauke, Herzig Stephan

机构信息

Institute for Diabetes and Cancer, Helmholtz Munich, Neuherberg, Germany.

Joint Heidelberg-IDC Translational Diabetes Program, Inner Medicine 1, Heidelberg University Hospital, Heidelberg, Germany.

出版信息

EMBO Rep. 2023 Oct 9;24(10):e55981. doi: 10.15252/embr.202255981. Epub 2023 Aug 10.

Abstract

Accumulation of excess nutrients hampers proper liver function and is linked to nonalcoholic fatty liver disease (NAFLD) in obesity. However, the signals responsible for an impaired adaptation of hepatocytes to obesogenic dietary cues remain still largely unknown. Post-translational modification by the small ubiquitin-like modifier (SUMO) allows for a dynamic regulation of numerous processes including transcriptional reprogramming. We demonstrate that specific SUMOylation of transcription factor Prox1 represents a nutrient-sensitive determinant of hepatic fasting metabolism. Prox1 is highly SUMOylated on lysine 556 in the liver of ad libitum and refed mice, while this modification is abolished upon fasting. In the context of diet-induced obesity, Prox1 SUMOylation becomes less sensitive to fasting cues. The hepatocyte-selective knock-in of a SUMOylation-deficient Prox1 mutant into mice fed a high-fat/high-fructose diet leads to a reduction of systemic cholesterol levels, associated with the induction of liver bile acid detoxifying pathways during fasting. The generation of tools to maintain the nutrient-sensitive SUMO-switch on Prox1 may thus contribute to the development of "fasting-based" approaches for the preservation of metabolic health.

摘要

过量营养素的积累会妨碍肝脏正常功能,并与肥胖症中的非酒精性脂肪性肝病(NAFLD)相关。然而,导致肝细胞对致肥胖饮食线索适应性受损的信号仍 largely 未知。小泛素样修饰物(SUMO)的翻译后修饰允许对包括转录重编程在内的众多过程进行动态调节。我们证明转录因子 Prox1 的特定 SUMO 化代表肝脏禁食代谢的营养敏感决定因素。在自由采食和再喂食小鼠的肝脏中,Prox1 在赖氨酸 556 处高度 SUMO 化,而这种修饰在禁食时被消除。在饮食诱导的肥胖背景下,Prox1 SUMO 化对禁食线索的敏感性降低。将 SUMO 化缺陷的 Prox1 突变体肝细胞选择性敲入喂食高脂肪/高果糖饮食的小鼠中,会导致全身胆固醇水平降低,这与禁食期间肝脏胆汁酸解毒途径的诱导有关。因此,开发维持 Prox1 上营养敏感 SUMO 开关的工具可能有助于开发“基于禁食”的方法来维持代谢健康。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed25/10561358/5b79517cd0c8/EMBR-24-e55981-g006.jpg

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