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Membrane responses to norepinephrine in cultured brown fat cells

机译:培养的棕色脂肪细胞对去甲肾上腺素的膜反应

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摘要

We used the "perforated-patch" technique (Horn, R., and A. Marty, 1988. Journal of General Physiology. 92:145-159) to examine the effects of adrenergic agonists on the membrane potentials and membrane currents in isolated cultured brown fat cells from neonatal rats. In contrast to our previous results using traditional whole-cell patch clamp, 1-23-d cultured brown fat cells clamped with the perforated patch consistently showed vigorous membrane responses to both alpha- and beta-adrenergic agonists, suggesting that cytoplasmic components essential for the thermogenic response are lost in whole-cell experiments. The membrane responses to adrenergic stimulation varied from cell to cell but were consistent for a given cell. Responses to bath-applied norepinephrine in voltage-clamped cells had three possible components: (a) a fast transient inward current, (b) a slower outward current carried by K+ that often oscillated in amplitude, and (c) a sustained inward current largely by Na+. The fast inward and outward currents were activated by alpha-adrenergic agonists while the slow inward current was mediated by beta-adrenergic agonists. Oscillating outward currents were the most frequently seen response to norepinephrine stimulation. Activation of this current, termed IK,NE, was independent of voltage and seemed to be carried by Ca2(+)-activated K channels since the current oscillated in amplitude at constant membrane potential and gradually decreased when the cells were bathed with calcium-free external solution. IK,NE had a novel pharmacology in that it could be blocked by 4-aminopyridine, tetraethylammonium, apamin, and charybdotoxin. Both IK,NE and the voltage-gated K channels also present in brown fat (Lucero, M. T., and P. A. Pappone, 1989a. Journal of General Physiology. 93:451-472) may play a role in maintaining cellular homeostasis in the face of the high metabolic activity involved in thermogenesis.
机译:我们使用“穿孔膜片”技术(Horn,R.和A. Marty,1988. Journal of General Physiology。92:145-159)检查肾上腺素能激动剂对分离培养物中膜电位和膜电流的影响。新生大鼠的棕色脂肪细胞。与我们以前使用传统的全细胞膜片钳的结果相反,用穿孔膜片钳住的1-23天培养的棕色脂肪细胞始终显示出对α-和β-肾上腺素能激动剂的强烈膜反应,这表明该蛋白是必需的。在全细胞实验中失去了热原反应。膜对肾上腺素能刺激的反应因细胞而异,但对于给定的细胞是一致的。电压钳制的细胞对浴液中去甲肾上腺素的反应具有三个可能的成分:(a)快速瞬态内向电流;(b)K +携带的较慢的外向电流,其振幅经常振荡;(c)持续的内向电流很大由Na +提供。快速的内向和外向电流由α-肾上腺素能激动剂激活,而缓慢的内向电流由β-肾上腺素能激动剂介导。振荡流出的电流是去甲肾上腺素刺激最常见的反应。该电流的激活称为IK,NE,与电压无关,似乎由Ca2(+)激活的K通道携带,因为该电流在恒定的膜电位下振幅振荡,并在无钙浴中逐渐降低。外部解决方案。 IK,NE具有新颖的药理作用,因为它可以被4-氨基吡啶,四乙铵,Apapamin和Charybdotoxin阻断。 IK,NE和电压门控的K通道也都存在于棕色脂肪中(Lucero,MT和PA Pappone,1989a。General Physiology。93:451-472)可能在维持面对脂肪的细胞稳态中发挥作用。与生热有关的高代谢活性。

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