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刺豚鼠相关蛋白与瘦素信号之间的生理和解剖学通路。

Physiological and anatomical circuitry between Agouti-related protein and leptin signaling.

作者信息

Wilson B D, Bagnol D, Kaelin C B, Ollmann M M, Gantz I, Watson S J, Barsh G S

机构信息

Department of Pediatrics, and Howard Hughes Medical Institute, Stanford University School of Medicine, California 94305-5428, USA.

出版信息

Endocrinology. 1999 May;140(5):2387-97. doi: 10.1210/endo.140.5.6728.

Abstract

Agouti-related protein (AGRP) is an orexigenic neuropeptide that acts via central melanocortin receptors, and whose messenger RNA (mRNA) levels are elevated in leptin-deficient mice. Fasting associated with a decline in circulating leptin normally causes a 15-fold elevation of hypothalamic Agrp mRNA levels but has no effect in leptin-deficient mice. Chronic hyperleptinemia associated with the tubby and Cpe(fat) mutations has no effect on Agrp mRNA levels, but short term leptin administration causes a 17% reduction of Agrp mRNA levels in nonmutant mice and a 700% reduction in leptin-deficient mice. In young nonobese animals, melanocortin receptor blockade associated with the Ay mutation causes complete resistance to leptin-induced weight loss. Dual in situ hybridization reveals that Agrp-expressing neurons in the medial portion of the arcuate nucleus constitute a subpopulation different from Pomc-expressing neurons, and that a significant proportion of Agrp-expressing neurons (10-25%) coexpresses the leptin receptor, Lepr-b. Immunocytochemistry confirms distinct locations of AGRP- and POMC-expressing cell bodies, but reveals an overlapping distribution of their terminal fields in the arcuate nucleus, the paraventricular hypothalamus, and the dorsomedial hypothalamus. These results suggest that in the fed state, AGRP is normally suppressed by leptin, and that release of this suppression during fasting leads to increased ingestive behavior.

摘要

刺鼠相关蛋白(AGRP)是一种通过中枢黑皮质素受体发挥作用的促食欲神经肽,其信使核糖核酸(mRNA)水平在瘦素缺乏的小鼠中升高。与循环瘦素下降相关的禁食通常会使下丘脑Agrp mRNA水平升高15倍,但对瘦素缺乏的小鼠没有影响。与tubby和Cpe(fat)突变相关的慢性高瘦素血症对Agrp mRNA水平没有影响,但短期给予瘦素会使非突变小鼠的Agrp mRNA水平降低17%,使瘦素缺乏的小鼠降低700%。在年轻的非肥胖动物中,与Ay突变相关的黑皮质素受体阻断导致对瘦素诱导的体重减轻完全抵抗。双重原位杂交显示,弓状核内侧部分表达Agrp的神经元构成了一个与表达Pomc的神经元不同的亚群,并且相当比例(10-25%)表达Agrp的神经元共表达瘦素受体Lepr-b。免疫细胞化学证实了表达AGRP和POMC的细胞体的不同位置,但揭示了它们的终末场在弓状核、下丘脑室旁核和下丘脑背内侧核中的重叠分布。这些结果表明,在进食状态下,AGRP通常受到瘦素的抑制,而禁食期间这种抑制的解除会导致摄食行为增加。

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