Chiappe de Cingolani G, Morgan P, Mundiña-Weilenmann C, Casey J, Fujinaga J, Camilión de Hurtado M, Cingolani H
Centro de Investigaciones Cardiovasculares, Facultad de Ciencias Médicas, 60 y 120, (1900), La Plata, Argentina.
Cardiovasc Res. 2001 Jul;51(1):71-9. doi: 10.1016/s0008-6363(01)00276-0.
The aim was to examine the regulation of the cardiac Na(+)-independent Cl(-)/HCO(3)(-) exchanger (AE) mRNA isoform expression in association to the enhanced AE activity in the hypertrophied myocardium of spontaneously hypertensive rats (SHR).
AE activity was determined by the initial rates of the pH(i) recovery from imposed intracellular alkalinization (forward mode of exchange) and the pH(i) rise induced by Cl(-) removal (reverse mode). Net HCO(3)(-) (J(HCO(3)(-))) efflux and influx were respectively determined. AE mRNA isoforms were analyzed by Northern blot with specific probes to detect AE1, AE2 and AE3 mRNAs.
Initial J(HCO(3)(-)) efflux after imposed alkaline load (pH(i) congruent with 7.5) was higher in SHR than in normotensive WKY rats (3.01+/-0.33, n=7, vs. 0.64+/-0.29 mM/min, n=5, P<0.05). J(HCO(3)(-)) influx induced by Cl(-) deprivation was also increased in SHR, 4.24+/-0.56 mM/min (n=10) versus 2.31+/-0.26 (n=10, P<0.05) in WKY. In arbitrary units, the 4.1-kb AE1 mRNA decreased in SHR (0.15+/-0.01, n=7) compared to WKY (0.29+/-0.06, n=7, P<0.05), whereas the 3.6-kb mRNA did not change. AE2 mRNAs were similarly expressed in WKY and SHR. Cardiac specific AE3 (cAE3) mRNA decreased in SHR, 1.10+/-0.16 arbitrary units (n=8) versus 1.79+/-0.24, (n=8, P<0.05) in WKY. Full length AE3 (flAE3) mRNA increased from 0.69+/-0.06 (WKY, n=8) to 1.25+/-0.19 arbitrary units in SHR (n=8, P<0.05).
The increase in flAE3 mRNA expression in cardiac tissue from the SHR is an adaptive change of the hypertrophied myocardium that might be in connection with the increased activity of the AE.
研究自发性高血压大鼠(SHR)肥厚心肌中钠非依赖性氯/碳酸氢根交换体(AE)mRNA亚型表达的调控及其与AE活性增强的关系。
通过细胞内碱化后pH(i)恢复的初始速率(正向交换模式)和氯离子去除诱导的pH(i)升高(反向模式)来测定AE活性。分别测定净碳酸氢根(J(HCO₃⁻))外流和内流。用特异性探针通过Northern印迹分析AE mRNA亚型,以检测AE1、AE2和AE3 mRNA。
碱性负荷(pH(i)约为7.5)后,SHR的初始J(HCO₃⁻)外流高于正常血压的WKY大鼠(3.01±0.33,n = 7,vs. 0.64±0.29 mM/min,n = 5,P < 0.05)。氯离子剥夺诱导的J(HCO₃⁻)内流在SHR中也增加,为4.24±0.56 mM/min(n = 10),而WKY为2.31±0.26(n = 10,P < 0.05)。以任意单位计,与WKY(0.29±0.06,n = 7)相比,SHR中4.1-kb的AE1 mRNA减少(0.15±0.01,n = 7,P < 0.05),而3.6-kb的mRNA没有变化。AE2 mRNA在WKY和SHR中的表达相似。心脏特异性AE3(cAE3)mRNA在SHR中减少,为1.10±0.16任意单位(n = 8),而WKY为1.79±0.24(n = 8,P < 0.05)。全长AE3(flAE3)mRNA从WKY的0.69±0.06(n = 8)增加到SHR的1.25±0.19任意单位(n = 8,P < 0.05)。
SHR心脏组织中flAE3 mRNA表达的增加是肥厚心肌的一种适应性变化,可能与AE活性增加有关。