NaV1.5辅助亚基FGF13通过调节膜胆固醇而不依赖于通道结合来调节通道。

IF 13.6 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Aravind R Gade, Mattia Malvezzi, Lala Tanmoy Das, Maiko Matsui, Cheng-I J Ma, Keon Mazdisnian, Steven O Marx, Frederick R Maxfield, Geoffrey S Pitt
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引用次数: 0

摘要

成纤维细胞生长因子同源因子(FHFs)结合到电压门控钠通道(VGSCs)的胞质羧基端并调节通道功能。FHFs或VGSCs中干扰双分子相互作用的变异与心律失常有关。与一些通道辅助亚基一样,FHFs发挥着额外的细胞调节作用,但这些替代作用是否影响VGSC调节尚不清楚。使用功能分离策略,我们发现结构引导,结合无能突变体FGF13(小鼠心脏中的主要FHF)可以完全调节VGSC稳态失活(SSI),这是FHF的典型效应。在从Fgf13基因敲除小鼠分离的心肌细胞中,突变体Fgf13的表达完全恢复了SSI的野生型调控。FGF13对SSI的调节来自于对局部可及膜胆固醇的影响,该胆固醇出乎意料地极化并集中在大多数VGSCs所在的插层椎间盘(ID)的心肌细胞中。Fgf13敲除消除了极化胆固醇分布,并导致VGSCs从ID中丢失。此外,我们表明,先前描述的fgf13依赖性VGSC电流在高温下的稳定取决于胆固醇机制。这些结果为FHFs如何影响VGSCs和改变通道辅助亚基施加影响的规范模型提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The NaV1.5 auxiliary subunit FGF13 modulates channels by regulating membrane cholesterol independent of channel binding.

Fibroblast growth factor homologous factors (FHFs) bind to the cytoplasmic carboxy terminus of voltage-gated sodium channels (VGSCs) and modulate channel function. Variants in FHFs or VGSCs perturbing that bimolecular interaction are associated with arrhythmias. Like some channel auxiliary subunits, FHFs exert additional cellular regulatory roles, but whether these alternative roles affect VGSC regulation is unknown. Using a separation-of-function strategy, we show that a structurally guided, binding incompetent mutant FGF13 (the major FHF in mouse heart) confers complete regulation of VGSC steady-state inactivation (SSI), the canonical effect of FHFs. In cardiomyocytes isolated from Fgf13 knockout mice, expression of the mutant FGF13 completely restores wild-type regulation of SSI. FGF13 regulation of SSI derives from effects on local accessible membrane cholesterol, which is unexpectedly polarized and concentrated in cardiomyocytes at the intercalated disc (ID) where most VGSCs localize. Fgf13 knockout eliminates the polarized cholesterol distribution and causes loss of VGSCs from the ID. Moreover, we show that the previously described FGF13-dependent stabilization of VGSC currents at elevated temperatures depends on the cholesterol mechanism. These results provide new insights into how FHFs affect VGSCs and alter the canonical model by which channel auxiliary subunits exert influence.

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来源期刊
Journal of Clinical Investigation
Journal of Clinical Investigation 医学-医学:研究与实验
CiteScore
24.50
自引率
1.30%
发文量
1034
审稿时长
2 months
期刊介绍: The Journal of Clinical Investigation, established in 1924 by the ASCI, is a prestigious publication that focuses on breakthroughs in basic and clinical biomedical science, with the goal of advancing the field of medicine. With an impressive Impact Factor of 15.9 in 2022, it is recognized as one of the leading journals in the "Medicine, Research & Experimental" category of the Web of Science. The journal attracts a diverse readership from various medical disciplines and sectors. It publishes a wide range of research articles encompassing all biomedical specialties, including Autoimmunity, Gastroenterology, Immunology, Metabolism, Nephrology, Neuroscience, Oncology, Pulmonology, Vascular Biology, and many others. The Editorial Board consists of esteemed academic editors who possess extensive expertise in their respective fields. They are actively involved in research, ensuring the journal's high standards of publication and scientific rigor.
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