首页> 外文期刊>The Journal of Physiology >Functional diversity of electrogenic Na+-HCO3- cotransport in ventricular myocytes from rat, rabbit and guinea pig.
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Functional diversity of electrogenic Na+-HCO3- cotransport in ventricular myocytes from rat, rabbit and guinea pig.

机译:大鼠,家兔和豚鼠心室肌​​细胞中电致Na + -HCO3-共转运的功能多样性。

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摘要

The Na(+)-HCO(3)(-) cotransporter (NBC) is an important sarcolemmal acid extruder in cardiac muscle. The characteristics of NBC expressed functionally in heart are controversial, with reports suggesting electroneutral (NBCn; 1HCO(3)(-) : 1Na(+); coupling coefficient N= 1) or electrogenic forms of the transporter (NBCe; equivalent to 2HCO(3)(-) : 1Na(+); N= 2). We have used voltage-clamp and epifluorescence techniques to compare NBC activity in isolated ventricular myocytes from rabbit, rat and guinea pig. Depolarization (by voltage clamp or hyperkalaemia) reversibly increased steady-state pH(i) while hyperpolarization decreased it, effects seen only in CO(2)/HCO(3)(-)-buffered solutions, and blocked by S0859 (cardiac NBC inhibitor). Species differences in amplitude of these pH(i) changes were rat > guinea pig approximately rabbit. Tonic depolarization (-140 mV to -0 mV) accelerated NBC-mediated pH(i) recovery from an intracellular acid load. At 0 mV, NBC-mediated outward current at resting pH(i) was +0.52 +/- 0.05 pA pF(-1) (rat, n= 5), +0.26 +/- 0.05 pA pF(-1) (guinea pig, n= 5) and +0.10 +/- 0.03 pA pF(-1) (rabbit, n= 9), with reversal potentials near -100 mV, consistent with N= 2. The above results indicate a functionally active voltage-sensitive NBCe in these species. Voltage-clamp hyperpolarization negative to the reversal potential for NBCe failed, however, to terminate or reverse NBC-mediated pH(i)-recovery from an acid load although it was slowed significantly, suggesting electroneutral NBC may also be operational. NBC-mediated pH(i) recovery was associated with a rise of [Na(+)](i) at a rate approximately 25% of that mediated via NHE, and consistent with an apparent NBC stoichiometry between N= 1 and N= 2. In conclusion, NBCe in the ventricular myocyte displays considerable functional variation among the three species tested (greatest in rat, least in rabbit) and may coexist with some NBCn activity.
机译:Na(+)-HCO(3)(-)共转运蛋白(NBC)是心肌中重要的肌膜酸挤出剂。在心脏中功能性表达的NBC的特性是有争议的,有报道表明电中性(NBCn; 1HCO(3)(-):1Na(+);耦合系数N = 1)或转运蛋白的电生成形式(NBCe;相当于2HCO( 3)(-):1Na(+); N = 2)。我们已经使用电压钳和落射荧光技术来比较兔,大鼠和豚鼠分离的心室肌细胞中的NBC活性。去极化(通过电压钳或高钾血症)可逆地增加稳态pH(i),而超极化则降低稳态pH(i),仅在CO(2)/ HCO(3)(-)缓冲溶液中可见,并被S0859(心脏NBC抑制剂)阻断)。这些pH(i)变化幅度的物种差异为大鼠>豚鼠,近似于兔子。进补去极化(-140 mV至-0 mV)加速了NBC介导的pH(i)从细胞内酸负荷的恢复。在0 mV时,在静止pH(i)下NBC介导的向外电流为+0.52 +/- 0.05 pA pF(-1)(大鼠,n = 5),+ 0.26 +/- 0.05 pA pF(-1)(几内亚猪,n = 5)和+0.10 +/- 0.03 pA pF(-1)(兔子,n = 9),反转电位接近-100 mV,与N = 2一致。以上结果表明,有功能的电压为-这些物种中的敏感NBCe。对NBCe的反转电位不利的电压钳型超极化未能终止或逆转酸负荷下NBC介导的pH(i)的回收,尽管它显着减慢了速度,这表明电子中性NBC也可能起作用。 NBC介导的pH(i)回收与[Na(+)](i)的上升相关,其速率约为NHE介导的25%,且与N = 1和N = 2之间的表观NBC化学计量一致总之,心室肌细胞中的NBCe在三种被测物种中表现出相当大的功能变异(大鼠中最大,兔子中最少),并且可能与某些NBCn活性共存。

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