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Regulation of cardiac repolarization by adenoviral gene transfer rationalized by computational modeling

机译:通过计算模型合理化腺病毒基因转移对心脏复极的调节

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Regulatory subunit KCNE3 (E3) interacts with KCNQ1 (Q1) in epithelia, regulating its activation kinetics and augmenting current density. Since E3 is expressed weakly in the heart, we hypothesized that ectopic expression of E3 in cardiac myocytes might abbreviate action potential duration by interacting with Q1 and augmenting the delayed rectifier current (I/sub K/). We constructed an adenoviral vector co-expressing GFP and E3, and injected it Into the left ventricular cavity of guinea pigs. After 72 hrs, the electrocardiographic QT interval was reduced by /spl sim/10% compared to baseline. E3-transduced cells had an APD/sub 90/ of 87 /spl plusmn/ 8 vs. 298 /spl plusmn/ 19 ms in control cells, while E-4031-insensitive I/sub K/ and activation kinetics were significantly augmented. Quantitative modeling of a transmural cardiac segment rationalized the degree of QT-interval abbreviation as a consequence of electrotonic interactions in the face of limited transduction efficiency and showed that heterogeneous transduction of E3 may actually potentiate arrhythmias. The results provide proof of the principle that ectopic expression of regulatory subunits can be exploited to enhance repolarization, a principle that may be useful in treating long QT syndrome (but only if fairly homogeneous ventricular expression can be achieved).
机译:调节亚基KCNE3(E3)在上皮细胞中与KCNQ1(Q1)相互作用,调节其激活动力学并增加电流密度。由于E3在心脏中的表达较弱,因此我们推测E3在心肌细胞中的异位表达可能通过与Q1相互作用并增加延迟的整流电流(I / sub K /)来缩短动作电位的持续时间。我们构建了共表达GFP和E3的腺病毒载体,并将其注射到豚鼠的左心室腔中。 72小时后,与基线相比,心电图QT间隔减少了/ spl sim / 10%。 E3转导的细胞的APD / sub 90 /为87 / spl plusmn / 8,而对照细胞为298 / spl plusmn / 19 ms,而对E-4031不敏感的I / sub K /和激活动力学显着增强。在面对有限的转导效率的情况下,由于电声相互作用,透壁心脏节段的定量建模合理化了QT间隔缩写的程度,并表明E3的异质转导实际上可以增强心律不齐。结果提供了可以利用调节性亚基的异位表达来增强复极化的原理的证据,该原理对于治疗长QT综合征可能有用(但前提是可以实现相当均一的心室表达)。

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