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下丘脑FTO与能量摄入的调节有关,而非与进食奖赏有关。

Hypothalamic FTO is associated with the regulation of energy intake not feeding reward.

作者信息

Olszewski Pawel K, Fredriksson Robert, Olszewska Agnieszka M, Stephansson Olga, Alsiö Johan, Radomska Katarzyna J, Levine Allen S, Schiöth Helgi B

机构信息

Department of Neuroscience, Functional Pharmacology, Uppsala University, Uppsala, Sweden.

出版信息

BMC Neurosci. 2009 Oct 27;10:129. doi: 10.1186/1471-2202-10-129.

Abstract

BACKGROUND

Polymorphism in the FTO gene is strongly associated with obesity, but little is known about the molecular bases of this relationship. We investigated whether hypothalamic FTO is involved in energy-dependent overconsumption of food. We determined FTO mRNA levels in rodent models of short- and long-term intake of palatable fat or sugar, deprivation, diet-induced increase in body weight, baseline preference for fat versus sugar as well as in same-weight animals differing in the inherent propensity to eat calories especially upon availability of diverse diets, using quantitative PCR. FTO gene expression was also studied in organotypic hypothalamic cultures treated with anorexigenic amino acid, leucine. In situ hybridization (ISH) was utilized to study FTO signal in reward- and hunger-related sites, colocalization with anorexigenic oxytocin, and c-Fos immunoreactivity in FTO cells at initiation and termination of a meal.

RESULTS

Deprivation upregulated FTO mRNA, while leucine downregulated it. Consumption of palatable diets or macronutrient preference did not affect FTO expression. However, the propensity to ingest more energy without an effect on body weight was associated with lower FTO mRNA levels. We found that 4-fold higher number of FTO cells displayed c-Fos at meal termination as compared to initiation in the paraventricular and arcuate nuclei of re-fed mice. Moreover, ISH showed that FTO is present mainly in hunger-related sites and it shows a high degree of colocalization with anorexigenic oxytocin.

CONCLUSION

We conclude that FTO mRNA is present mainly in sites related to hunger/satiation control; changes in hypothalamic FTO expression are associated with cues related to energy intake rather than feeding reward. In line with that, neurons involved in feeding termination express FTO. Interestingly, baseline FTO expression appears linked not only with energy intake but also energy metabolism.

摘要

背景

FTO基因多态性与肥胖密切相关,但这种关系的分子基础尚不清楚。我们研究了下丘脑FTO是否参与能量依赖性的食物过度消耗。我们使用定量PCR测定了短期和长期摄入美味脂肪或糖、禁食、饮食诱导体重增加、脂肪与糖的基线偏好的啮齿动物模型中FTO mRNA水平,以及在摄入不同饮食时卡路里摄入固有倾向不同的同体重动物中FTO mRNA水平。还研究了用厌食性氨基酸亮氨酸处理的下丘脑器官型培养物中FTO基因的表达。利用原位杂交(ISH)研究FTO在与奖赏和饥饿相关部位的信号、与厌食性催产素的共定位,以及进食开始和结束时FTO细胞中的c-Fos免疫反应性。

结果

禁食上调FTO mRNA,而亮氨酸下调FTO mRNA。食用美味饮食或宏量营养素偏好不影响FTO表达。然而,在不影响体重的情况下摄入更多能量的倾向与较低的FTO mRNA水平相关。我们发现,与再喂食小鼠的室旁核和弓状核进食开始时相比,进食结束时显示c-Fos的FTO细胞数量高出4倍。此外,ISH显示FTO主要存在于与饥饿相关的部位,并且与厌食性催产素高度共定位。

结论

我们得出结论,FTO mRNA主要存在于与饥饿/饱腹感控制相关的部位;下丘脑FTO表达的变化与能量摄入相关线索而非进食奖赏相关。与此一致的是,参与进食终止的神经元表达FTO。有趣的是,FTO的基线表达似乎不仅与能量摄入有关,还与能量代谢有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beba/2774323/fb89bb02656c/1471-2202-10-129-1.jpg

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