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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >VGF is required for obesity induced by diet, gold thioglucose treatment, and agouti and is differentially regulated in pro-opiomelanocortin- and neuropeptide Y-containing arcuate neurons in response to fasting.
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VGF is required for obesity induced by diet, gold thioglucose treatment, and agouti and is differentially regulated in pro-opiomelanocortin- and neuropeptide Y-containing arcuate neurons in response to fasting.

机译:饮食,饮食中的硫代葡萄糖黄金和刺豆诱导的肥胖症需要VGF,并且在禁食时,在含有前鸦脑黑皮质素和神经肽Y的弓形神经元中会受到VGF的差异调节。

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摘要

Targeted deletion of the gene encoding the neuronal and neuroendocrine secreted polypeptide VGF (nonacronymic) produces a lean, hypermetabolic mouse. Consistent with this phenotype, VGF mRNA levels are regulated in the hypothalamic arcuate nucleus in response to fasting. To gain insight into the site(s) and mechanism(s) of action of VGF, we further characterized VGF expression in the hypothalamus. Double-label studies indicated that VGF and pro-opiomelanocortin were coexpressed in lateral arcuate neurons in the fed state, and that VGF expression was induced after fasting in medial arcuate neurons that synthesize neuropeptide Y (NPY). Like NPY, VGF mRNA induction in this region of the hypothalamus in fasted mice was inhibited by exogenous leptin. In leptin-deficient ob/ob and receptor-mutant db/db mice, VGF mRNA levels in the medial arcuate were elevated. To identify neural pathways that are functionally compromised by Vgf ablation, VGF mutant mice were crossed with obese A(y)/a (agouti) and ob/ob mice. VGF deficiency completely blocked the development of obesity in A(y)/a mice, whereas deletion of Vgf in ob/ob mice attenuated weight gain but had no impact on adiposity. Hypothalamic levels of NPY and agouti-related polypeptide mRNAs in both double-mutant lines were dramatically elevated 10- to 15-fold above those of wild-type mice. VGF-deficient mice were also found to resist diet- and gold thioglucose-induced obesity. These data and the susceptibility of VGF mutant mice to monosodium glutamate-induced obesity are consistent with a role for VGF in outflow pathways, downstream of hypothalamic and/or brainstem melanocortin 4 receptors, that project via the autonomic nervous system to peripheral metabolic tissues and regulate energy homeostasis.
机译:有针对性地删除编码神经元和神经内分泌分泌的多肽VGF(非ac性)的基因会产生一个瘦的,高代谢的小鼠。与这种表型一致,下丘脑弓形核中的VGF mRNA水平受禁食的调节。为了深入了解VGF的作用部位和作用机理,我们进一步表征了VGF在下丘脑中的表达。双标签研究表明,在进食状态下外侧弓形神经元中共表达了VGF和促黑素皮质激素原,在合成神经肽Y(NPY)的内侧弓形神经元中禁食后,VGF表达被诱导。像NPY一样,禁食小鼠下丘脑此区域的VGF mRNA诱导被外源瘦素抑制。在瘦蛋白缺陷型ob / ob和受体突变型db / db小鼠中,弓状内侧的VGF mRNA水平升高。为了确定在功能上受到Vgf消融损害的神经通路,将VGF突变小鼠与肥胖A(y)/ a(agouti)和ob / ob小鼠杂交。 VGF缺乏症完全阻止了A(y)/ a小鼠的肥胖发展,而ob / ob小鼠中Vgf的缺失减弱了体重增加,但对肥胖没有影响。在两个双突变株中,下丘脑中的NPY和与刺鼠相关的多肽mRNA的水平都比野生型小鼠高10到15倍。还发现缺乏VGF的小鼠可以抵抗饮食和硫代葡萄糖金诱导的肥胖症。这些数据和VGF突变小鼠对谷氨酸钠诱发的肥胖症的易感性与VGF在下丘脑和/或脑干黑皮质素4受体下游的流出途径中的作用一致,该受体通过自主神经系统投射到周围的代谢组织并调节能量稳态。

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