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膜胆固醇的耗竭消除了大鼠子宫肌细胞外向钾电流的钙激活成分,并降低了膜电容。

Depletion of membrane cholesterol eliminates the Ca2+-activated component of outward potassium current and decreases membrane capacitance in rat uterine myocytes.

作者信息

Shmygol A, Noble K, Wray Susan

机构信息

Clinical Sciences Research Institute, Warwick Medical School, University of Warwick, Coventry CV2 2DX, UK.

出版信息

J Physiol. 2007 Jun 1;581(Pt 2):445-56. doi: 10.1113/jphysiol.2007.129452. Epub 2007 Mar 1.

Abstract

Changes in membrane cholesterol content have potent effects on cell signalling and contractility in rat myometrium and other smooth muscles. We have previously shown that depletion of cholesterol with methyl-beta-cyclodextrin (MCD) disrupts caveolar microdomains. The aim of this work was to determine the mechanism underlying the increase in Ca(2+) signalling and contractility occurring in the myometrium with MCD. Patch clamp data obtained on freshly isolated myocytes from the uterus of day 19-21 rats showed that outward K(+) current was significantly reduced by MCD. Membrane capacitance was also reduced. Cholesterol-saturated MCD had no effect on the amplitude of outward current suggesting that the reduction in the outward current was due to cholesterol depletion induced by MCD rather than a direct inhibitory action of MCD on the K(+) channels. Confocal visualization of the membrane bound indicator Calcium Green C18, revealed internalization of the surface membrane with MCD treatment. Large conductance, Ca(2+)-sensitive K(+) channel proteins have been shown to localize to caveolae. When these channels were blocked by iberiotoxin outward current was significantly reduced in the uterine myocytes; MCD treatment reduced the density of outward current. Following reduction of outward current by MCD pretreatment, iberiotoxin was unable to produce any additional decrease in the current, suggesting a common target. MCD treatment also increased the amplitude and frequency of spontaneous rises in cytosolic Ca(2+) level (Ca(2+) transients) in isolated myocytes. In intact rat myometrium, MCD treatment increased Ca(2+) signalling and contractility, consistent with previous findings, and this effect was also found to be reduced by BK channel inhibition. These data suggest that (1) disruption of cholesterol-rich microdomains and caveolae by MCD leads to a decrease in the BK channel current thus increasing cell excitability, and (2) the changes in membrane excitability produced by MCD underlie the changes found in Ca(2+) signalling and uterine contractility.

摘要

膜胆固醇含量的变化对大鼠子宫肌层及其他平滑肌的细胞信号传导和收缩性有显著影响。我们之前已经表明,用甲基-β-环糊精(MCD)消耗胆固醇会破坏小窝微区。这项工作的目的是确定子宫肌层中MCD导致Ca(2+)信号传导增加和收缩性增强的潜在机制。从第19 - 21天大鼠子宫新鲜分离的心肌细胞上获得的膜片钳数据显示,MCD显著降低外向K(+)电流。膜电容也降低。胆固醇饱和的MCD对外向电流幅度没有影响,这表明外向电流的降低是由于MCD诱导的胆固醇消耗,而不是MCD对K(+)通道的直接抑制作用。膜结合指示剂钙绿C18的共聚焦观察显示,MCD处理后表面膜发生内化。大电导、Ca(2+)敏感的K(+)通道蛋白已被证明定位于小窝。当这些通道被iberiotoxin阻断时子宫肌细胞外向电流显著降低;MCD处理降低外向电流密度。MCD预处理使外向电流降低后,iberiotoxin不能使电流进一步降低,提示存在共同靶点。MCD处理还增加了分离的心肌细胞中细胞溶质Ca(2+)水平([Ca(2+)]i瞬变)自发升高的幅度和频率。在完整的大鼠子宫肌层中,MCD处理增加Ca(2+)信号传导和收缩性(与之前的研究结果一致),并且发现BK通道抑制也会降低这种作用。这些数据表明:(1)MCD破坏富含胆固醇的微区和小窝导致BK通道电流降低,从而增加细胞兴奋性;(2)MCD引起的膜兴奋性变化是Ca(2+)信号传导和子宫收缩性变化的基础。

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