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磷脂代谢产物增强HERG钾通道功能的潜在机制。

Potential mechanisms for the enhancement of HERG K+ channel function by phospholipid metabolites.

作者信息

Wang Jingxiong, Zhang Yiqiang, Wang Huizhen, Han Hong, Nattel Stanley, Yang Baofeng, Wang Zhiguo

机构信息

Research Center, Montreal Heart Institute, and Department of Medicine, University of Montreal, Canada.

出版信息

Br J Pharmacol. 2004 Feb;141(4):586-99. doi: 10.1038/sj.bjp.0705646. Epub 2004 Jan 26.

Abstract
  1. Phospholipid metabolites lysophospholipids cause extracellular K(+) accumulation and action potential shortening with increased risk of arrhythmias during myocardial ischemia. Here we studied effects of several lysophospholipids with different lengths of hydrocarbon chains and charged headgroups on HERG K(+) currents (I(HERG)) expressed in HEK293 cells and the potential mechanisms using whole-cell patch-clamp techniques. 2. Only the lipids with 16 hydrocarbons such as 1-palmitoyl-lysophosphatidylcholine (LPC-16) and 1-palmitoyl-lysophosphatidylglycerol (LPG-16) were found to produce significant enhancement of I(HERG) and negative shifts of HERG activation, although the voltage dependence of the effects was different between LPC-16 and LPG-16 which have differently charged headgroups. The lipid with 18 hydrocarbons modestly increased I(HERG). The lipids with 6 or 24 hydrocarbons had no effect or slightly decreased I(HERG). 3. Inhibition or activation of protein kinase C did not alter the effects of LPC-16 and LPG-16. Participation of phosphatidylinositol-4,5-bisphosphate in I(HERG) enhancement by LPC-16/LPG-16 was also excluded. 4. Vitamin E augmented the effects of LPC-16/LPG-16 whereas xanthine/xanthine oxidase reduced I(HERG): indicating that LPC-16/LPG-16 produced dual effects on I(HERG): direct enhancement of I(HERG) and indirect suppression via production of superoxide anion. 5. We conclude that enhancement of HERG function by lysophospholipids is specific to the lipids with 16-hydrocarbon chain structure and the pattern of voltage dependence is determined by the polar headgroups. The increase in I(HERG) is best described by direct interactions between lipid molecules and HERG proteins, which is consistent with lack of effects via membrane destabilization or modulation by intracellular signaling pathways.
摘要
  1. 磷脂代谢产物溶血磷脂会导致细胞外钾离子积聚和动作电位缩短,增加心肌缺血期间心律失常的风险。在此,我们使用全细胞膜片钳技术研究了几种具有不同烃链长度和带电头部基团的溶血磷脂对HEK293细胞中表达的HERG钾电流(I(HERG))的影响及其潜在机制。2. 仅发现具有16个烃基的脂质,如1-棕榈酰溶血磷脂酰胆碱(LPC-16)和1-棕榈酰溶血磷脂酰甘油(LPG-16),能显著增强I(HERG)并使HERG激活发生负向偏移,尽管LPC-16和LPG-16具有不同带电头部基团,其效应的电压依赖性有所不同。具有18个烃基的脂质适度增加了I(HERG)。具有6个或24个烃基的脂质没有影响或略微降低了I(HERG)。3.蛋白激酶C的抑制或激活并未改变LPC-16和LPG-16的作用。磷脂酰肌醇-4,5-二磷酸参与LPC-16/LPG-16增强I(HERG)的作用也被排除。4. 维生素E增强了LPC-16/LPG-16的作用,而黄嘌呤/黄嘌呤氧化酶降低了I(HERG):表明LPC-16/LPG-16对I(HERG)产生双重作用:直接增强I(HERG)和通过产生超氧阴离子间接抑制。5. 我们得出结论,溶血磷脂对HERG功能的增强作用特定于具有16-烃链结构的脂质,电压依赖性模式由极性头部基团决定。I(HERG)的增加最好通过脂质分子与HERG蛋白之间的直接相互作用来描述,这与通过膜去稳定化或细胞内信号通路调节而产生的效应缺乏一致。

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