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瘦素受体信使核糖核酸可识别大鼠下丘脑内由禁食激活的神经肽Y神经元亚群。

Leptin receptor mRNA identifies a subpopulation of neuropeptide Y neurons activated by fasting in rat hypothalamus.

作者信息

Baskin D G, Breininger J F, Schwartz M W

机构信息

Department of Medicine, University of Washington, Seattle, USA.

出版信息

Diabetes. 1999 Apr;48(4):828-33. doi: 10.2337/diabetes.48.4.828.

Abstract

The decline of leptin (Ob protein) concentrations during fasting is implicated as a signal for increasing the expression of the orexigenic peptide neuropeptide Y (NPY) in the hypothalamus. To test the hypothesis that the effects of food intake on arcuate nucleus NPY activation are mediated by leptin, we performed simultaneous triple in situ hybridization colocalization studies to determine whether the subset of NPY neurons that are activated by fasting preferentially expresses the long form of the leptin receptor (Ob-Rb). Thus, mRNAs encoding NPY and pro-opiomelanocortin (POMC) were colocalized in the arcuate nucleus of fed and fasted rats by fluorescence in situ hybridization in combination with isotopic in situ hybridization for Ob-Rb mRNA. In fed animals, 47% of arcuate nucleus neurons containing NPY mRNA also contained Ob-Rb mRNA, compared with 79% of POMC neurons (P < 0.01). After a 2-day fast, the number of arcuate nucleus neurons with NPY mRNA increased 50% (P < 0.05); the number of these that coexpressed Ob-Rb increased twofold (P = 0.013). Furthermore, Ob-Rb mRNA hybridization in individual NPY neurons increased by 64% (P < 0.02). In contrast, the number of POMC neurons that coexpressed Ob-Rb was unchanged. A significant interpretation of these findings is that the NPY neurons that do not express detectable levels of Ob-Rb mRNA are not activated by fasting, whereas the NPY neurons that are activated by fasting are the ones that express Ob-Rb. These data demonstrate a significant physiological difference between NPY neurons that express Ob-Rb and those that do not. The results support the conclusion that the effect of food intake on NPY neurons is mediated by the direct action of leptin via Ob-Rb receptors expressed by these NPY cells. The results also indicate that expression of Ob-Rb is a defining phenotypic characteristic of the subset of arcuate nucleus NPY neurons that are activated by fasting and play a central role in the adaptive response to negative energy balance.

摘要

禁食期间瘦素(Ob蛋白)浓度的下降被认为是下丘脑促食欲肽神经肽Y(NPY)表达增加的信号。为了验证食物摄入对弓状核NPY激活的影响是由瘦素介导的这一假说,我们进行了同步三重原位杂交共定位研究,以确定禁食激活的NPY神经元亚群是否优先表达长型瘦素受体(Ob-Rb)。因此,通过荧光原位杂交结合Ob-Rb mRNA的同位素原位杂交,将编码NPY和阿黑皮素原(POMC)的mRNA在喂食和禁食大鼠的弓状核中共定位。在喂食的动物中,47%含有NPY mRNA的弓状核神经元也含有Ob-Rb mRNA,而POMC神经元的这一比例为79%(P<0.01)。禁食2天后,含有NPY mRNA的弓状核神经元数量增加了50%(P<0.05);共表达Ob-Rb的神经元数量增加了两倍(P = 0.013)。此外,单个NPY神经元中Ob-Rb mRNA杂交增加了64%(P<0.02)。相比之下,共表达Ob-Rb的POMC神经元数量没有变化。这些发现的一个重要解释是,不表达可检测水平Ob-Rb mRNA的NPY神经元不会被禁食激活,而被禁食激活的NPY神经元是那些表达Ob-Rb的神经元。这些数据表明表达Ob-Rb的NPY神经元和不表达Ob-Rb的NPY神经元之间存在显著的生理差异。结果支持以下结论:食物摄入对NPY神经元的影响是由瘦素通过这些NPY细胞表达的Ob-Rb受体的直接作用介导的。结果还表明,Ob-Rb的表达是弓状核NPY神经元亚群的一个决定性表型特征,该亚群被禁食激活并在对负能量平衡的适应性反应中起核心作用。

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