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脑型钠通道在心脏细胞表面去极化与收缩偶联中的意外作用。

An unexpected role for brain-type sodium channels in coupling of cell surface depolarization to contraction in the heart.

作者信息

Maier Sebastian K G, Westenbroek Ruth E, Schenkman Kenneth A, Feigl Eric O, Scheuer Todd, Catterall William A

机构信息

Department of Pharmacology, University of Washington, Seattle, WA 98195, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Mar 19;99(6):4073-8. doi: 10.1073/pnas.261705699. Epub 2002 Mar 12.

Abstract

Voltage-gated sodium channels composed of pore-forming alpha and auxiliary beta subunits are responsible for the rising phase of the action potential in cardiac muscle, but the functional roles of distinct sodium channel subtypes have not been clearly defined. Immunocytochemical studies show that the principal cardiac pore-forming alpha subunit isoform Na(v)1.5 is preferentially localized in intercalated disks, whereas the brain alpha subunit isoforms Na(v)1.1, Na(v)1.3, and Na(v)1.6 are localized in the transverse tubules. Sodium currents due to the highly tetrodotoxin (TTX)-sensitive brain isoforms in the transverse tubules are small and are detectable only after activation with beta scorpion toxin. Nevertheless, they play an important role in coupling depolarization of the cell surface membrane to contraction, because low TTX concentrations reduce left ventricular function. Our results suggest that the principal cardiac isoform in the intercalated disks is primarily responsible for action potential conduction between cells and reveal an unexpected role for brain sodium channel isoforms in the transverse tubules in coupling electrical excitation to contraction in cardiac muscle.

摘要

由形成孔道的α亚基和辅助β亚基组成的电压门控钠通道,负责心肌动作电位的上升期,但不同钠通道亚型的功能作用尚未明确界定。免疫细胞化学研究表明,主要的心肌形成孔道α亚基亚型Na(v)1.5优先定位于闰盘,而脑α亚基亚型Na(v)1.1、Na(v)1.3和Na(v)1.6定位于横小管。横小管中对高浓度河豚毒素(TTX)敏感的脑亚型所产生的钠电流很小,只有在用β蝎毒素激活后才能检测到。然而,它们在将细胞表面膜的去极化与收缩偶联中起重要作用,因为低浓度TTX会降低左心室功能。我们的结果表明,闰盘中主要的心肌亚型主要负责细胞间动作电位的传导,并揭示了脑钠通道亚型在横小管中在将电兴奋与心肌收缩偶联中的意外作用。

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Sodium channel beta subunits: anything but auxiliary.钠通道β亚基:绝非辅助性成分。
Neuroscientist. 2001 Feb;7(1):42-54. doi: 10.1177/107385840100700108.
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Resurgence of sodium channel research.钠通道研究的复兴
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Voltage-gated sodium channels as therapeutic targets.电压门控钠通道作为治疗靶点。
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