Villarroel A, Schwarz T L
Department of Molecular and Cellular Physiology, Beckman Center, Stanford University, California 94305, USA.
J Neurosci. 1996 Feb 1;16(3):1016-25. doi: 10.1523/JNEUROSCI.16-03-01016.1996.
We have found that transient A-type currents expressed in Xenopus oocytes from members of the Kv4 family are suppressed by arachidonic acid. Currents from members of the Kv1, Kv2, and Kv3 families showed little or no inhibition by fatty acids in this expression system, although Shaker currents showed a modest increase in peak amplitude. The inhibition of Kv4 channels was not prevented by cyclo-oxygenase, lipoxygenase, or cytochrome P-450 inhibitors and was mimicked by 5,8,11,14-eicosatetraynoic acid, an arachidonic acid analog that is not metabolized by these pathways. Other unsaturated cis fatty acids with more than two double bonds produced a similar effect. In inside-out macropatches, the current was reversibly reduced > 50% by 2 mM arachidonic acid, and the inhibition developed in < 40 sec. These results suggest that, at concentrations that are likely to be physiologically relevant, arachidonic acid interacts directly with the channel or with a closely associated component. Preliminary mutagenesis of Kv4.2 channels indicates that the N terminal is not required for arachidonic acid action but that the S4-S5 loop may influence the effect.
我们发现,非洲爪蟾卵母细胞中表达的Kv4家族成员的瞬时A型电流会受到花生四烯酸的抑制。在该表达系统中,Kv1、Kv2和Kv3家族成员的电流几乎未受脂肪酸抑制,或完全不受其抑制,不过Shaker电流的峰值幅度有适度增加。环氧化酶、脂氧合酶或细胞色素P-450抑制剂并不能阻止Kv4通道受到抑制,5,8,11,14-二十碳四烯酸(一种不会通过这些途径代谢的花生四烯酸类似物)可模拟这种抑制作用。其他具有两个以上双键的不饱和顺式脂肪酸也产生了类似效果。在内外膜向外的大膜片钳中,2 mM花生四烯酸可使电流可逆性降低超过50%,且抑制作用在40秒内产生。这些结果表明,在可能具有生理相关性的浓度下,花生四烯酸直接与通道或紧密相关的成分相互作用。对Kv4.2通道进行的初步诱变表明,花生四烯酸发挥作用不需要N端,但S4-S5环可能会影响这种作用效果。