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成纤维细胞生长因子13通过连接蛋白43转运调节心肌细胞冲动传导,且不依赖于电压门控钠通道。

FGF13 regulates cardiomyocyte impulse propagation via Cx43 trafficking independent of voltage-gated sodium channels.

作者信息

Das Lala Tanmoy, Malvezzi Mattia, Gade Aravind, Matsui Maiko, McKay Margaret, Wei Eric Q, Zelich Matea J, Mazdisnian Keon, Kushner Jared, Chen Bi-Xing, DiStefano Isabella, Roybal Daniel, Yang Lin, Stoll Lisa, Lo James C, Kalocsay Marian, Akar Fadi G, Marx Steven O, Pitt Geoffrey S

出版信息

bioRxiv. 2025 Jul 27:2025.07.23.666473. doi: 10.1101/2025.07.23.666473.

Abstract

BACKGROUND

Fibroblast growth factor homologous factor (FHF) variants associate with arrhythmias. Although FHFs are best characterized as regulators of voltage gated sodium channel (VGSC) gating, recent studies suggest broader, non-VGSC-related functions, including regulation of Cx43 gap junctions and/or hemichannels, mechanisms that have generally been understudied or disregarded.

METHODS

We assessed cardiac conduction and cardiomyocyte action potentials in mice with constitutive cardiac-specific ablation (c ) while targeting Cx43 gap junctions and hemichannels pharmacologically. Using immunostaining and biochemistry, we characterized FGF13 regulation of Cx43 abundance and subcellular distribution. With proximity labeling proteomics, we investigated novel candidate mechanisms underlying FGF13 regulation of Cx43.

RESULTS

FGF13 ablation prolonged the QRS and QT intervals on the surface electrocardiogram. Carbenoxolone, a Cx43 gap junction uncoupler, markedly prolonged the QRS duration leading to conduction system block in c but not in WT mice. Optical mapping revealed markedly decreased conduction velocity (CV) during ventricular pacing. Microscopy revealed markedly perturbed trafficking of Cx43, reduced localization in the intercalated disc, and suggested decreased membrane Cx43 but increased Cx43 hemichannels in cardiomyocytes from c mice. Resting membrane potential (RMP) was depolarized and APD50 was prolonged in c cardiomyocytes. Both were restored towards wildtype (WT) values with Gap19 (a Cx43 hemichannel inhibitor), expression of FGF13, or expression of a mutant FGF13 incapable of binding to VGSCs, emphasizing VGSC-independent regulation by FGF13. To assess the functional impact of RMP depolarization, hearts were subjected to hypokalemia, which had no effect in WT hearts but fully rescued CV in c hearts. Proteomic analyses revealed candidate roles for FGF13 in the regulation of vesicular-mediated transport. Biochemistry and immunocytochemistry showed that FGF13 ablation destabilized microtubules and reduced the expression of tubulins and MAP4, the major cardiac microtubule regulator.

CONCLUSIONS

FGF13 regulates microtubule-dependent trafficking and targeting of Cx43, thereby impacting cardiac impulse propagation via VGSC-independent mechanisms.

摘要

背景

成纤维细胞生长因子同源因子(FHF)变体与心律失常相关。尽管FHFs作为电压门控钠通道(VGSC)门控的调节剂已得到充分表征,但最近的研究表明其具有更广泛的、与VGSC无关的功能,包括对Cx43间隙连接和/或半通道的调节,而这些机制通常研究较少或被忽视。

方法

我们评估了在组成型心脏特异性消融(c )小鼠中的心脏传导和心肌细胞动作电位,同时通过药理学方法靶向Cx43间隙连接和半通道。使用免疫染色和生物化学方法,我们表征了FGF13对Cx43丰度和亚细胞分布的调节。通过邻近标记蛋白质组学,我们研究了FGF13调节Cx43的新候选机制。

结果

FGF13消融延长了体表心电图上的QRS和QT间期。Cx43间隙连接解偶联剂羧苄青霉素显著延长了c 小鼠而非野生型(WT)小鼠的QRS持续时间,导致传导系统阻滞。光学标测显示心室起搏期间传导速度(CV)显著降低。显微镜检查显示Cx43的运输明显紊乱,在闰盘中的定位减少,并提示c 小鼠心肌细胞中膜Cx43减少但Cx43半通道增加。c 心肌细胞的静息膜电位(RMP)去极化,APD50延长。使用Gap19(一种Cx43半通道抑制剂)、FGF13表达或不能与VGSCs结合的突变型FGF13表达,两者均恢复到野生型(WT)值,强调了FGF13的非VGSC依赖性调节。为了评估RMP去极化的功能影响,对心脏进行低钾血症处理,这对WT心脏没有影响,但完全挽救了c 心脏的CV。蛋白质组学分析揭示了FGF13在囊泡介导的运输调节中的候选作用。生物化学和免疫细胞化学表明,FGF13消融使微管不稳定,并降低了微管蛋白和主要心脏微管调节剂MAP4的表达。

结论

FGF13调节微管依赖性的Cx43运输和靶向,从而通过非VGSC依赖性机制影响心脏冲动传播。

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