Sheeba Vasu, Gu Huaiyu, Sharma Vijay K, O'Dowd Diane K, Holmes Todd C
Department of Physiology and Biophysics, University of California, Irvine, Irvine, CA 92697, USA.
J Neurophysiol. 2008 Feb;99(2):976-88. doi: 10.1152/jn.00930.2007. Epub 2007 Dec 12.
The ventral lateral neurons (LNvs) of adult Drosophila brain express oscillating clock proteins and regulate circadian behavior. Whole cell current-clamp recordings of large LNvs in freshly dissected Drosophila whole brain preparations reveal two spontaneous activity patterns that correlate with two underlying patterns of oscillating membrane potential: tonic and burst firing of sodium-dependent action potentials. Resting membrane potential and spontaneous action potential firing are rapidly and reversibly regulated by acute changes in light intensity. The LNv electrophysiological light response is attenuated, but not abolished, in cry(b) mutant flies hypomorphic for the cell-autonomous light-sensing protein CRYPTOCHROME. The electrical activity of the large LNv is circadian regulated, as shown by significantly higher resting membrane potential and frequency of spontaneous action potential firing rate and burst firing pattern during circadian subjective day relative to subjective night. The circadian regulation of membrane potential, spontaneous action potential firing frequency, and pattern of Drosophila large LNvs closely resemble mammalian circadian neuron electrical characteristics, suggesting a general evolutionary conservation of both physiological and molecular oscillator mechanisms in pacemaker neurons.
成年果蝇大脑的腹外侧神经元(LNvs)表达振荡的生物钟蛋白并调节昼夜节律行为。在新鲜解剖的果蝇全脑标本中对大型LNvs进行全细胞电流钳记录,揭示了两种自发活动模式,这与振荡膜电位的两种潜在模式相关:钠依赖性动作电位的紧张性发放和爆发性发放。静息膜电位和自发动作电位发放受光强度急性变化的快速且可逆调节。在细胞自主光感受蛋白隐花色素功能减弱的cry(b)突变果蝇中,LNv电生理光反应减弱但未消除。大型LNv的电活动受昼夜节律调节,相对于昼夜主观夜,在昼夜主观日期间,静息膜电位、自发动作电位发放频率和爆发性发放模式显著更高,表明果蝇大型LNvs的膜电位、自发动作电位发放频率和模式的昼夜节律调节与哺乳动物昼夜节律神经元的电特性非常相似,这表明起搏器神经元中生理和分子振荡器机制在进化上具有普遍保守性。