Lee S C, Pappone P A
Section of Neurobiology, Physiology, and Behavior, University of California, Davis 95616, USA.
Am J Physiol. 1997 Aug;273(2 Pt 1):C679-86. doi: 10.1152/ajpcell.1997.273.2.C679.
Sympathetic stimulation of brown adipocytes plays a major role in body energy homeostasis by activating energy-wasting pathways. Sympathetic neuronal input initiates a variety of metabolic, developmental, and membrane responses in brown fat cells. Many of these actions are mediated by adrenergic pathways mobilized by released norepinephrine. However, since sympathetic stimulation may also release vesicular ATP, we tested brown fat cells for ATP responses. Micromolar concentrations of extracellular ATP had a number of effects on brown adipocytes. We have shown previously that ATP elicits substantial (average of approximately 30%) increases in cell membrane capacitance (P. A. Pappone and S. C. Lee, J. Gen. Physiol. 108: 393-404, 1996). Here, we show that cytosolic calcium levels were increased by ATP, both through release from intracellular stores and through influx, as assessed by fura 2 imaging. In addition, ATP indirectly activated a nonselective cation conductance that was independent of cytosolic calcium levels in patch voltage-clamped brown fat cells. Similar calcium, conductance, and capacitance responses could be activated by 2-methylthio-ATP and ADP, consistent with mediation by a P2 type purinergic receptor. Calorimetric measurements from cell suspensions showed that ATP increased basal heat production of isolated brown fat cells by approximately 40% but had no effect on the greater than fivefold increase in heat production seen with maximal adrenergic stimulation. These myriad responses to extracellular ATP suggest that P2 receptor-mediated signaling is important in brown adipocyte physiology and that sympathetic stimulation may normally activate purinergic as well as adrenergic pathways in brown fat.
交感神经对褐色脂肪细胞的刺激通过激活能量消耗途径在机体能量稳态中起主要作用。交感神经神经元输入引发褐色脂肪细胞中的多种代谢、发育和膜反应。其中许多作用是由释放的去甲肾上腺素动员的肾上腺素能途径介导的。然而,由于交感神经刺激也可能释放囊泡ATP,我们测试了褐色脂肪细胞对ATP的反应。微摩尔浓度的细胞外ATP对褐色脂肪细胞有多种作用。我们之前已经表明,ATP可使细胞膜电容大幅增加(平均约30%)(P.A.帕波内和S.C.李,《普通生理学杂志》108:393 - 404,1996)。在此,我们表明,通过fura 2成像评估,ATP可通过从细胞内储存库释放以及通过内流增加胞质钙水平。此外,在膜片钳电压钳制的褐色脂肪细胞中,ATP间接激活了一种与胞质钙水平无关的非选择性阳离子电导。2 - 甲硫基 - ATP和ADP可激活类似的钙、电导和电容反应,这与P2型嘌呤能受体介导一致。细胞悬液的量热测量表明,ATP可使分离的褐色脂肪细胞的基础产热增加约40%,但对最大肾上腺素能刺激时所见的产热增加超过五倍没有影响。这些对细胞外ATP的众多反应表明,P2受体介导的信号传导在褐色脂肪细胞生理学中很重要,并且交感神经刺激可能通常会激活褐色脂肪中的嘌呤能以及肾上腺素能途径。