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The biophysical characterization of the first SCN5A mutation R1512W identified in Chinese sudden unexplained nocturnal death syndrome

机译:在中国无法解释的夜间猝死综合征中发现的第一个SCN5A突变R1512W的生物物理特征

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摘要

Increasing evidence observed in clinical phenotypes show that abrupt breathing disorders during sleep may play an important role in the pathogenesis of sudden unexplained nocturnal death syndrome (SUNDS). The reported Brugada syndrome causing mutation R1512W in cardiac sodium channel a subunit encoded gene SCN5A, without obvious loss of function of cardiac sodium channel in previous in vitro study, was identified as the first genetic cause of Chinese SUNDS by us. The R1512W carrier was a 38-year-old male SUNDS victim who died suddenly after tachypnea in nocturnal sleep without any structural heart disease. To test our hypothesis that slight acidosis conditions may contribute to the significant loss of function of mutant cardiac sodium channels underlying SUNDS, the biophysical characterization of SCN5A mutation R1512W was performed under both extracellular and intracellular slight acidosis at pH 7.0. The cDNA of R1512W was created using site-directed mutagenesis methods in the pcDNA3 plasmid vector. The wild type (WT) or mutant cardiac sodium channel R1512W was transiently transfected into HEK293 cells. Macroscopic voltage-gated sodium current (I-Na) was measured 24hours after transfection with the whole-cell patch clamp method at room temperature in the HEK293 cells. Under the baseline conditions at pH 7.4, R1512W (-175 +/- 15pA/pF) showed about 30% of reduction in peak I-Na compared to WT (-254 +/- 23pA/pF, P < 0.05). Under the acidosis condition at pH 7.0, R1512W (-130 +/- 17 pA/pF) significantly decreased the peak I-Na by nearly 50% compared to WT (-243 +/- 23pA/pF, P < 0.005). Compared to baseline condition at pH 7.4, the acidosis at pH 7.0 did not affect the peak I-Na in WT (P > 0.05) but decreased peak I-Na in R1512W (P < 0.05). This initial functional study for SCN5A mutation in the Chinese SUNDS victim revealed that the acidosis aggravated the loss of function of mutant channel R1512W and suggested that nocturnal sleep disorders-associated slight acidosis may trigger the lethal arrhythmia underlying the sudden death of SUNDS cases in the setting of genetic defect.
机译:在临床表型中观察到的越来越多的证据表明,睡眠过程中突然的呼吸障碍可能在突然原因不明的夜间死亡综合征(SUNDS)的发病机理中起重要作用。据报道,在先前的体外研究中,引起心脏钠通道A亚基编码基因SCN5A突变R1512W且没有明显的心脏钠通道功能丧失的Brugada综合征被确定为中国SUNDS的第一个遗传原因。 R1512W携带者是一名38岁的男性SUNDS受害者,他在夜间呼吸中呼吸急促后突然死亡,没有任何结构性心脏病。为了检验我们的假设,即轻度酸中毒条件可能会导致SUNDS背后的突变心脏钠通道的功能显着丧失,在细胞外和细胞内轻度酸中毒均在pH 7.0下进行了SCN5A突变R1512W的生物物理表征。 R1512W的cDNA使用定点诱变方法在pcDNA3质粒载体中创建。野生型(WT)或突变的心脏钠通道R1512W被瞬时转染到HEK293细胞中。 HEK293细胞在室温下用全细胞膜片钳方法转染后24小时测量宏观电压门控钠电流(I-Na)。在pH 7.4的基线条件下,与WT(-254 +/- 23pA / pF)相比,R1512W(-175 +/- 15pA / pF)的I-Na峰降低约30%。在酸度为7.0的酸中毒条件下,R1512W(-130 +/- 17 pA / pF)与WT(-243 +/- 23pA / pF,P <0.005)相比,峰值I-Na降低了近50%。与pH 7.4的基线条件相比,pH 7.0的酸中毒不会影响WT的I-Na峰值(P> 0.05),但会降低R1512W的I-Na峰值(P <0.05)。这项针对中国SUNDS受害者的SCN5A突变的初步功能研究表明,酸中毒加重了突变型通道R1512W的功能丧失,并表明夜间睡眠障碍相关的轻度酸中毒可能会触发致命的心律失常,从而导致SUNDS病例突然死亡。基因缺陷。

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