Clarke Alison L, Petrou Steven, Walsh John V, Singer Joshua J
Department of Physiology, University of Massachusetts Medical School, Worcester, Massachusetts 01655, USA.
Am J Physiol Cell Physiol. 2002 Nov;283(5):C1441-53. doi: 10.1152/ajpcell.00035.2002.
To determine the mechanism of fatty acid modulation of rabbit pulmonary artery large-conductance Ca2+ -activated K+ (BK(Ca)) channel activity, we studied effects of fatty acids and other lipids on channel activity in excised patches with patch-clamp techniques. The structural features of the fatty acid required to increase BK(Ca) channel activity (or average number of open channels, NP(o)) were identified to be the negatively charged head group and a sufficiently long (C > 8) carbon chain. Positively charged lipids like sphingosine, which have a sufficiently long alkyl chain (C >or= 8), produced a decrease in NP(o). Neutral and short-chain lipids did not alter NP(o). Screening of membrane surface charge with high-ionic-strength bathing solutions (330 mM K+ or 130 mM K+, 300 mM Na+) did not alter the modulation of the BK(Ca) channel NP(o) by fatty acids and other charged lipids, indicating that channel modulation is unlikely to be due to an alteration of the membrane electric field or the attraction of local counterions to the channel. Fatty acids and other negatively charged lipids were able to modulate BK(Ca) channel activity in bathing solutions containing 0 mM Ca2+, 20 mM EGTA, suggesting that calcium is not required for this modulation. Together, these results indicate that modulation of BK(Ca) channels by fatty acids and other charged lipids most likely occurs by their direct interaction with the channel protein itself or with some other channel-associated component.
为了确定脂肪酸对兔肺动脉大电导钙激活钾(BK(Ca))通道活性的调节机制,我们采用膜片钳技术研究了脂肪酸和其他脂质对膜片上通道活性的影响。已确定增加BK(Ca)通道活性(或开放通道的平均数量,NP(o))所需的脂肪酸结构特征为带负电荷的头部基团和足够长(C>8)的碳链。像鞘氨醇这类带正电荷且具有足够长烷基链(C≥8)的脂质会使NP(o)降低。中性和短链脂质不会改变NP(o)。用高离子强度的浴液(330 mM K+或130 mM K+,300 mM Na+)筛选膜表面电荷,并不会改变脂肪酸和其他带电荷脂质对BK(Ca)通道NP(o)的调节,这表明通道调节不太可能是由于膜电场的改变或局部抗衡离子对通道的吸引所致。脂肪酸和其他带负电荷的脂质能够在含有0 mM Ca2+、20 mM EGTA的浴液中调节BK(Ca)通道活性,这表明这种调节不需要钙。综上所述,这些结果表明脂肪酸和其他带电荷脂质对BK(Ca)通道的调节很可能是通过它们与通道蛋白本身或其他一些与通道相关的成分直接相互作用而发生的。