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Type 5 adenylyl cyclase plays a major role in stabilizing heart rate in response to microgravity induced by parabolic flight

机译:5型腺苷酸环化酶在稳定抛物线飞行引起的微重力时起稳定心率的作用

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摘要

It is well known that autonomic nervous activity is altered under microgravity, leading to disturbed regulation of cardiac function, such as heart rate. Autonomic regulation of the heart is mostly determined by β-adrenergic receptors/cAMP signal, which is produced by adenylyl cyclase, in cardiac myocytes. To examine a hypothesis that a major cardiac isoform, type 5 adenylyl cyclase (AC5), plays an important role in regulating heart rate during parabolic flights, we used transgenic mouse models with either disrupted (AC5KO) or overexpressed AC5 in the heart (AC5TG) and analyzed heart rate variability. Heart rate had a tendency to decrease gradually in later phases within one parabola in each genotype group, but the magnitude of decrease was smaller in AC5KO than that in the other groups. The inverse of heart rate, i.e., the R-R interval, was much more variable in AC5KO and less variable in AC5TG than that in wild-type controls. The standard deviation of normal R-R intervals, a marker of total autonomic variability, was significantly greater in microgravity phase in each genotype group, but the magnitude of increase was much greater in AC5KO than that in the other groups, suggesting that heart rate regulation became unstable in the absence of AC5. In all, AC5 plays a major role in stabilizing heat rate under microgravity.
机译:众所周知,自主神经活动会在微重力作用下发生变化,从而导致心脏功能(例如心律)的调节受到干扰。心脏的自主调节主要由心肌细胞中腺苷酸环化酶产生的β-肾上腺素受体/ cAMP信号决定。为了检验一种假设,即主要的心脏同种型5型腺苷酸环化酶(AC5)在抛物线飞行过程中对调节心率起重要作用,我们使用了心脏中AC5受损(AC5KO)或过表达(AC5TG)的转基因小鼠模型并分析了心率变异性。在每个基因型组中,一个抛物线内的心率在后来的阶段都有逐渐降低的趋势,但是AC5KO的降低幅度小于其他组。与野生型对照组相比,AC5KO中心率的倒数,即R-R间隔变化更大,而AC5TG中心率的变化更大。在每个基因型组的微重力阶段,正常RR间隔(总自主性变异的标志物)的标准差明显更大,但是AC5KO的增加幅度比其他各组大得多,这表明心律调节变得不稳定在没有AC5的情况下。总之,AC5在稳定微重力下的热速率方面起着重要作用。

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