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首页> 外文期刊>The Journal of Nutritional Biochemistry >Cyp2b-null male mice are susceptible to diet-induced obesity and perturbations in lipid homeostasis
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Cyp2b-null male mice are susceptible to diet-induced obesity and perturbations in lipid homeostasis

机译:CYP2B-NULL雄性小鼠易受饮食诱导的肥胖和血脂性稳态扰动的影响

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Obesity is an endemic problem in the United States and elsewhere, and data indicate that in addition to overconsumption, exposure to specific chemicals enhances obesity. CYP2B metabolizes multiple endo- and xenobiotics, and recent data suggests that repression of Cyp2b activity increases dyslipidemia and age-onset obesity, especially in males. To investigate the role played by Cyp2b in lipid homeostasis and obesity, we treated wildtype and Cyp2b-null mice with a normal (ND) or 60% high-fat diet (HFD) for 10 weeks and determined metabolic and molecular changes. Male HFD-fed Cyp2b-null mice weigh 15% more than HFD-fed wildtype mice, primarily due to an increase in white adipose tissue (WAT); however, Cyp2b-null female mice did not demonstrate greater body mass or WAT. Serum parameters indicate increased ketosis, leptin and cholesterol in HFD-fed Cyp2b-null male mice compared to HFD-fed wildtype mice. Liver triglycerides and liver:serum triglyceride ratios were higher than their similarly treated wildtype counterparts in Cyp2b-null male mice, indicating a role for Cyp2b in fatty acid metabolism regardless of diet. Furthermore, RNAseq demonstrates that hepatic gene expression in ND-fed Cyp2b-null male mice is similar to HFD-fed WT male mice, suggestive of fatty liver disease progression and a role for Cyp2b in lipid homeostasis. Females did not show as demonstrative changes in liver health, and significantly fewer changes in gene expression, as well as gene expression associated with liver disease. Overall our data indicates that the repression or inhibition of CYP2B may exacerbate metabolic disorders and cause obesity by perturbing fatty acid metabolism, especially in males. (C) 2019 Elsevier Inc. All rights reserved.
机译:肥胖是美国和其他地方的流行问题,数据表明除了过度限制,暴露于特定化学品增强了肥胖症。 CYP2B代谢多发性和异种症,最近的数据表明CYP2B活性的抑制增加了血脂血症和年龄发作肥胖,特别是在雄性中。为了探讨CYP2B在脂质稳态和肥胖症中的作用,我们处理了野生型和CYP2B-NULL小鼠,其具有正常(ND)或60%的高脂饮食(HFD)10周并确定代谢和分子变化。男性HFD-FED CYP2B-NULL小鼠比HFD喂养的野生型小鼠重量增加15%,主要是由于白色脂肪组织(WAT)的增加;然而,CYP2B-NULL雌性小鼠没有表现出更大的体重或WAT。与HFD喂养的野生型小鼠相比,血清参数表示HFD喂养CYP2B-NULL阳性小鼠中的酮化,瘦素和胆固醇增加。肝甘油三酯和肝脏:血清甘油三酯比率高于其CYP2B-NULL雄性小鼠的类似处理的野生型对应物,表明无论饮食如何,表明CYP2B在脂肪酸代谢中的作用。此外,RNASEQ证明ND-FED CYP2B-NULL阳性小鼠中的肝基因表达类似于HFD喂养的WT雄性小鼠,暗示脂肪肝疾病进展以及脂质稳态中的CYP2B的作用。女性没有表现为肝脏健康的示范性变化,并且基因表达的变化显着较少,以及与肝病相关的基因表达。总体而言,我们的数据表明CYP2B的抑制或抑制可以加剧代谢紊乱并通过扰动脂肪酸代谢,特别是在雄性中引起肥胖症。 (c)2019 Elsevier Inc.保留所有权利。

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