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油酸酯可诱导小鼠下丘脑葡萄糖兴奋神经元发生钾通道依赖性超极化,而不改变细胞能荷。

Oleate induces K channel-dependent hyperpolarization in mouse hypothalamic glucose-excited neurons without altering cellular energy charge.

作者信息

Dadak Selma, Beall Craig, Vlachaki Walker Julia M, Soutar Marc P M, McCrimmon Rory J, Ashford Michael L J

机构信息

Division of Molecular and Clinical Medicine, School of Medicine, Ninewells Hospital and Medical School, University of Dundee, Dundee DD1 9SY, UK.

Division of Molecular and Clinical Medicine, School of Medicine, Ninewells Hospital and Medical School, University of Dundee, Dundee DD1 9SY, UK; Institute of Biomedical and Clinical Sciences, University of Exeter Medical School, RILD Building, Barrack Road, Exeter EX2 5DW, UK.

出版信息

Neuroscience. 2017 Mar 27;346:29-42. doi: 10.1016/j.neuroscience.2016.12.053. Epub 2017 Jan 9.

Abstract

The unsaturated fatty acid, oleate exhibits anorexigenic properties reducing food intake and hepatic glucose output. However, its mechanism of action in the hypothalamus has not been fully determined. This study investigated the effects of oleate and glucose on GT1-7 mouse hypothalamic cells (a model of glucose-excited (GE) neurons) and mouse arcuate nucleus (ARC) neurons. Whole-cell and perforated patch-clamp recordings, immunoblotting and cell energy status measures were used to investigate oleate- and glucose-sensing properties of mouse hypothalamic neurons. Oleate or lowered glucose concentration caused hyperpolarization and inhibition of firing of GT1-7 cells by the activation of ATP-sensitive K channels (K). This effect of oleate was not dependent on fatty acid oxidation or raised AMP-activated protein kinase activity or prevented by the presence of the UCP2 inhibitor genipin. Oleate did not alter intracellular calcium, indicating that CD36/fatty acid translocase may not play a role. However, oleate activation of K may require ATP metabolism. The short-chain fatty acid octanoate was unable to replicate the actions of oleate on GT1-7 cells. Although oleate decreased GT1-7 cell mitochondrial membrane potential there was no change in total cellular ATP or ATP/ADP ratios. Perforated patch and whole-cell recordings from mouse hypothalamic slices demonstrated that oleate hyperpolarized a subpopulation of ARC GE neurons by K activation. Additionally, in a separate small population of ARC neurons, oleate application or lowered glucose concentration caused membrane depolarization. In conclusion, oleate induces Kdependent hyperpolarization and inhibition of firing of a subgroup of GE hypothalamic neurons without altering cellular energy charge.

摘要

不饱和脂肪酸油酸具有厌食特性,可减少食物摄入量和肝脏葡萄糖输出。然而,其在下丘脑的作用机制尚未完全确定。本研究调查了油酸和葡萄糖对GT1-7小鼠下丘脑细胞(葡萄糖兴奋(GE)神经元模型)和小鼠弓状核(ARC)神经元的影响。采用全细胞和穿孔膜片钳记录、免疫印迹和细胞能量状态测量来研究小鼠下丘脑神经元对油酸和葡萄糖的感知特性。油酸或降低的葡萄糖浓度通过激活ATP敏感性钾通道(K)导致GT1-7细胞超极化并抑制其放电。油酸的这种作用不依赖于脂肪酸氧化或升高的AMP激活蛋白激酶活性,也不受UCP2抑制剂京尼平的存在所阻止。油酸不会改变细胞内钙,表明CD36/脂肪酸转运酶可能不发挥作用。然而,油酸对K的激活可能需要ATP代谢。短链脂肪酸辛酸无法复制油酸对GT1-7细胞的作用。尽管油酸降低了GT1-7细胞的线粒体膜电位,但细胞总ATP或ATP/ADP比值没有变化。从小鼠下丘脑切片进行的穿孔膜片和全细胞记录表明,油酸通过激活K使ARC GE神经元亚群超极化。此外,在另一小群ARC神经元中,应用油酸或降低葡萄糖浓度会导致膜去极化。总之,油酸诱导GE下丘脑神经元亚群的K依赖性超极化并抑制其放电,而不改变细胞能量状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a25/5346158/fbac53f7a1d8/gr1.jpg

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