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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Conditional knockout of Fgf13 in murine hearts increases arrhythmia susceptibility and reveals novel ion channel modulatory roles
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Conditional knockout of Fgf13 in murine hearts increases arrhythmia susceptibility and reveals novel ion channel modulatory roles

机译:FGF13在小鼠心中的条件敲除增加了心律失常易感性,揭示了新的离子通道调节作用

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The intracellular fibroblast growth factors (iFGF/FHFs) bind directly to cardiac voltage gated Na+ channels, and modulate their function. Mutations that affect iFGF/FHF-Na+ channel interaction are associated with arrhythmia syndromes. Although suspected to modulate other ionic currents, such as Ca2+ channels based on acute knockdown experiments in isolated cardiomyocytes, the in vivo consequences of iFGF/FHF gene ablation on cardiac electrical activity are still unknown. We generated inducible, cardiomyocyte-restricted Fgf13 knockout mice to determine the resultant effects of Fgf13 gene ablation. Patch clamp recordings from ventricular myocytes isolated from Fgf13 knockout mice showed a similar to 25% reduction in peak Na+ channel current density and a hyperpolarizing shift in steady-state inactivation. Electrocardiograms on Fgf13 knockout mice showed a prolonged QRS duration. The Na+ channel blacker flecainide further prolonged QRS duration and triggered ventricular tachyarrhythmias only in Fgf13 knockout mice, suggesting that arrhythmia vulnerability resulted, at least in part, from a loss of functioning Na+ channels. Consistent with these effects on Na+ channels, action potentials in Fgf13 knockout mice, compared to Cre control mice, exhibited slower upstrokes and reduced amplitude, but unexpectedly had longer durations. We investigated candidate sources of the prolonged action potential durations in myocytes from Fgf13 knockout mice and found a reduction of the transient outward K+ current (I-to). Fgf13 knockout did not alter whole-cell protein levels of Kv4.2 and Kv4.3, the I-to pore-forming subunits, but did decrease Kv4.2 and Kv4.3 at the sarcolemma. No changes were seen in the sustained outward K+ current or voltage-gated Ca2+ current, other candidate contributors to the increased action potential duration. These results implicate that FGF13 is a critical cardiac Na+ channel modulator and Fgf13 knockout mice have increased arrhythmia susceptibility in the setting of Na+ channel blockade. The unanticipated effect on Ito revealed new FGF13 properties and the unexpected lack of an effect on voltage-gated Ca2+ channels highlight potential compensatory changes in vivo not readily revealed with acute Fgf13 knockdown in cultured cardiomyocytes. (C)-2017 Elsevier Ltd. All rights reserved.
机译:细胞内成纤维细胞生长因子(IFGF / FHFS)直接与心电电压门控Na +通道结合,并调节它们的功能。影响IFGF / FHF-NA +通道相互作用的突变与心律失常综合征有关。虽然涉嫌调节其他离子电流,例如基于孤立的心肌细胞中的急性敲低实验的Ca2 +通道,但IFGF / FHF基因消融对心脏电活动的体内后果仍然未知。我们产生诱导的心肌细胞限制FGF13敲除小鼠,以确定FGF13基因消融的结果效果。来自FGF13敲除小鼠分离的心室肌细胞的膜片夹具显示出类似于峰值Na +通道电流密度的25%和稳态失活的超极化变化。 FGF13敲除小鼠上的心电图显示延长的QRS持续时间。 Na +通道黑色絮状物进一步延长QRS持续时间并仅在FGF13敲除小鼠中引发心室性心律失常,表明心律失常脆弱性至少部分地从功能不变NA +通道中产生。与对Na +通道的这些影响一致,与CRE对照小鼠相比,FGF13敲除小鼠的动作电位表现出较慢的上摩擦和降低幅度,但出乎意料地具有更长的持续时间。我们调查了来自FGF13敲除小鼠的肌细胞长期动作潜在持续时间的候选来源,发现瞬态向外K +电流(I-to)的减少。 FGF13敲除未改变全细胞蛋白质水平的KV4.2和KV4.3,I-孔形成亚基,但确实降低了Sarcolemma的Kv4.2和Kv4.3。在持续向外的K +电流或电压门控CA2 +电流中没有看到任何变化,其他候选贡献者增加了动作潜在持续时间。这些结果涉及FGF13是关键心脏Na +通道调节剂,FGF13敲除小鼠在Na +通道阻滞的设置中具有增加的心律失常易感性。对ITO的意外效果揭示了新的FGF13性质,并且意外缺乏对电压门控Ca2 +通道的影响突出了培养的心肌细胞中急性FGF13敲低容易显示的潜在补偿性变化。 (c)-2017 elestvier有限公司保留所有权利。

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