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首页> 外文期刊>The Journal of Experimental Biology >Cardiac performance in the zebrafish breakdance mutant
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Cardiac performance in the zebrafish breakdance mutant

机译:斑马鱼霹雳突变体的心脏表现

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摘要

In the Tubingen screen a break-dance mutant of zebrafish (bre) was described as an arrhythmia, in which the ventricle beats only with every second atrial contraction (2:1 rhythm). Surprisingly, a careful analysis of the effect of the breakdance mutation on cardiac performance of the zebrafish during development between 3 d.p.f. and 14 d.p.f revealed that homozygous bre mutants did not always show the 2:1 rhythm. Cardiac activity was continuously recorded for a period of 20 min in each larva, and during this period we observed that heart rate randomly switched between the 2:1 rhythm and a 1:1 rhythm. Furthermore, at 28 degrees C and at 31 degrees C the expression of the 2:1 rhythm decreased with development. At 31 degrees C this was in part due to a significantly reduced survival rate of mutants beyond 4 d.p.f. Besides development, temperature had a marked effect on the expression of the 2:1 rhythm, and during the first days of development the expression of the 2:1 rhythm was significantly higher at elevated incubation temperatures. By contrast, in the 2:1 beating heart ventricular contraction rate was about 80 beats min(-1) throughout development irrespective of the temperature, and even in the 1:1 rhythm mutants showed a significant bradycardia at all three temperatures (25 degrees C, 28 degrees C or 31 degrees C). Compared to wild-type animals, cardiac output was significantly lower in bre mutants. Pressure traces recorded in the ventricle of mutants revealed a prolonged relaxation phase, indicating that the second pacemaker current could not be conveyed to the ventricle (AV-block). This phenotype is comparable to the human Long QT Syndrome, an arrhythmia caused by a modification of an ion channel involved in cardiac repolarization. The bradycardia and the modified temperature sensitivity of heart rate suggested that the activity of the pacemaker cells was also affected by this mutation.
机译:在蒂宾根(Tubingen)屏幕中,斑马鱼(bre)的霹雳舞突变体被描述为心律失常,其中心室仅在每隔一秒钟的心房收缩(2:1节律)中跳动。出乎意料的是,仔​​细分析了突变在3 d.p.f.到2 d.f.之间的发育过程中对斑马鱼心脏性能的影响。和14 d.p.f发现纯合bre突变体并不总是显示2:1的节奏。在每个幼虫中持续记录心脏活动20分钟,在此期间,我们观察到心率随机在2:1节奏和1:1节奏之间切换。此外,在28℃和31℃下,2:1节律的表达随着发育而降低。在31摄氏度时,部分原因是突变体的存活率大大降低,超过4d.p.f。除了发育,温度对2:1节奏的表达有显着影响,在发育的第一天,在升高的孵育温度下,2:1节奏的表达明显更高。相比之下,在2:1的搏动中,无论温度如何,整个发育过程中的心室收缩率约为80次min(-1),甚至在1:1的节奏突变体中,在所有三个温度下(25摄氏度)也显示出明显的心动过缓,28摄氏度或31摄氏度)。与野生型动物相比,bre突变体的心输出量显着降低。突变体的心室中记录的压力迹线显示出延长的舒张期,表明第二个起搏器电流无法传递至心室(AV阻滞)。这种表型可与人类长QT综合征相媲美,后者是由参与心脏复极的离子通道修饰引起的心律失常。心动过缓和心率对温度的敏感性改变表明,该突变也影响起搏器细胞的活性。

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