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下丘脑的前阿黑皮素原加工受饱和脂肪直接调控:对肥胖症发展的影响。

Proopiomelanocortin Processing in the Hypothalamus Is Directly Regulated by Saturated Fat: Implications for the Development of Obesity.

机构信息

Laboratory of Cell Signalling-Obesity and Comorbidities Research Center, University of Campinas, Campinas, Brazil.

Laboratory of Nutritional Genomics, School of Applied Science, University of Campinas, Limeira, Brazil.

出版信息

Neuroendocrinology. 2020;110(1-2):92-104. doi: 10.1159/000501023. Epub 2019 May 20.

Abstract

In outbred mice, susceptibility or resistance to diet-induced obesity is associated with rapid changes in hypothalamic proopiomelanocortin (POMC) levels. Here, we evaluated 3 hypotheses that potentially explain the development of the different obesity phenotypes in outbred Swiss mice. First, rapid and differential changes in the gut microbiota in obesity-prone (OP) and obesity-resistant (OR) mice fed on a high-fat diet (HFD) might cause differential efficiencies in fatty acid harvesting leading to changes in systemic fatty acid concentrations that in turn affect POMC expression and processing. Second, independently of the gut microbiota, OP mice might have increased blood fatty acid levels after the introduction of a HFD, which could affect POMC expression and processing. Third, fatty acids might act directly in the hypothalamus to differentially regulate POMC expression and/or processing in OP and OR mice. We evaluated OP and OR male Swiss mice using 16S rRNA sequencing for the determination of gut microbiota; gas chromatography for blood lipid determination; and immunoblot and real-time polymerase chain reaction for protein and transcript determination and indirect calorimetry. Some experiments were performed with human pluripotent stem cells differentiated into hypothalamic neurons. We did not find evidence supporting the first 2 hypotheses. However, we found that in OP but not in OR mice, palmitate induces a rapid increase in hypothalamic POMC, which is followed by increased expression of proprotein convertase subtilisin/kexin type 1 PC1/3. Lentiviral inhibition of hypothalamic PC1/3 increased caloric intake and body mass in both OP and OR mice. In human stem cell-derived hypothalamic cells, we found that palmitate potently suppressed the production of POMC-derived peptides. Palmitate directly regulates PC1/3 in OP mice and likely has a functional impact on POMC processing.

摘要

在杂交小鼠中,饮食诱导肥胖的易感性或抗性与下丘脑前阿黑皮素原(POMC)水平的快速变化有关。在这里,我们评估了 3 种假说,这些假说可能解释了杂交瑞士小鼠中不同肥胖表型的发展。首先,肥胖易感(OP)和肥胖抗性(OR)小鼠在高脂肪饮食(HFD)喂养时,肠道微生物群的快速和差异变化可能导致脂肪酸摄取效率的差异,从而导致系统脂肪酸浓度的变化,进而影响 POMC 的表达和加工。其次,独立于肠道微生物群,OP 小鼠在引入 HFD 后可能会增加血液脂肪酸水平,这可能会影响 POMC 的表达和加工。第三,脂肪酸可能直接作用于下丘脑,以差异调节 OP 和 OR 小鼠中 POMC 的表达和/或加工。我们使用 16S rRNA 测序评估了 OP 和 OR 雄性瑞士小鼠的肠道微生物群;气相色谱法测定血液脂质;免疫印迹和实时聚合酶链反应测定蛋白和转录;间接热量法。一些实验用人多能干细胞分化为下丘脑神经元进行。我们没有发现支持前 2 种假说的证据。然而,我们发现,在 OP 小鼠中,但不在 OR 小鼠中,软脂酸诱导下丘脑 POMC 快速增加,随后促蛋白水解酶 1/3(PC1/3)的表达增加。下丘脑 PC1/3 的慢病毒抑制增加了 OP 和 OR 小鼠的热量摄入和体重。在人源干细胞衍生的下丘脑细胞中,我们发现软脂酸强烈抑制 POMC 衍生肽的产生。软脂酸直接调节 OP 小鼠中的 PC1/3,并且可能对 POMC 加工具有功能影响。

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