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通过Nav1.5反义抑制鉴定成年犬心肌细胞中晚钠电流的分子特性。

Molecular identity of the late sodium current in adult dog cardiomyocytes identified by Nav1.5 antisense inhibition.

作者信息

Maltsev Victor A, Kyle John W, Mishra Sudhish, Undrovinas Abertas

机构信息

Department of Internal Medicine, Henry Ford Hospital, Cardiovascular Research, Education & Research Bldg. Rm. 4015, 2799 West Grand Blvd., Detroit, MI 48202-2689, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2008 Aug;295(2):H667-76. doi: 10.1152/ajpheart.00111.2008. Epub 2008 Jun 13.

Abstract

Late Na(+) current (I(NaL)) is a major component of the action potential plateau in human and canine myocardium. Since I(NaL) is increased in heart failure and ischemia, it represents a novel potential target for cardioprotection. However, the molecular identity of I(NaL) remains unclear. We tested the hypothesis that the cardiac Na(+) channel isoform (Na(v)1.5) is a major contributor to I(NaL) in adult dog ventricular cardiomyocytes (VCs). Cultured VCs were exposed to an antisense morpholino-based oligonucleotide (Na(v)1.5 asOligo) targeting the region around the start codon of Na(v)1.5 mRNA or a control nonsense oligonucleotide (nsOligo). Densities of both transient Na(+) current (I(NaT)) and I(NaL) (both in pA/pF) were monitored by whole cell patch clamp. In HEK293 cells expressing Na(v)1.5 or Na(v)1.2, Na(v)1.5 asOligo specifically silenced functional expression of Na(v)1.5 (up to 60% of the initial I(NaT)) but not Na(v)1.2. In both nsOligo-treated controls and untreated VCs, I(NaT) and I(NaL) remained unchanged for up to 5 days. However, both I(NaT) and I(NaL) decreased exponentially with similar time courses (tau = 46 and 56 h, respectively) after VCs were treated with Na(v)1.5 asOligo without changes in 1) decay kinetics, 2) steady-state activation and inactivation, and 3) the ratio of I(NaL) to I(NaT). Four days after exposure to Na(v)1.5 asOligo, I(NaT) and I(NaL) amounted to 68 +/- 6% (mean +/- SE; n = 20, P < 0.01) and 60 +/- 7% (n = 11, P < 0.018) of those in VCs treated by nsOligo, respectively. We conclude that in adult dog heart Na(v)1.5 sodium channels have a "functional half-life" of approximately 35 h (0.69tau) and make a major contribution to I(NaL).

摘要

晚钠电流(I(NaL))是人和犬心肌动作电位平台期的主要组成部分。由于I(NaL)在心力衰竭和缺血时会增加,它代表了一种新型的心脏保护潜在靶点。然而,I(NaL)的分子身份仍不清楚。我们检验了这样一种假说,即心脏钠通道亚型(Na(v)1.5)是成年犬心室肌细胞(VCs)中I(NaL)的主要贡献者。将培养的心室肌细胞暴露于靶向Na(v)1.5 mRNA起始密码子周围区域的基于反义吗啉代的寡核苷酸(Na(v)1.5反义寡核苷酸)或对照无义寡核苷酸(nsOligo)。通过全细胞膜片钳监测瞬时钠电流(I(NaT))和I(NaL)的密度(均以pA/pF为单位)。在表达Na(v)1.5或Na(v)1.2的HEK293细胞中,Na(v)1.5反义寡核苷酸特异性沉默了Na(v)1.5的功能表达(高达初始I(NaT)的60%),但未沉默Na(v)1.2。在nsOligo处理的对照组和未处理的心室肌细胞中,I(NaT)和I(NaL)在长达5天的时间内保持不变。然而,在用Na(v)1.5反义寡核苷酸处理心室肌细胞后,I(NaT)和I(NaL)均呈指数下降,且时间进程相似(时间常数分别为46和56小时),同时1)衰减动力学、2)稳态激活和失活以及3)I(NaL)与I(NaT)的比值均无变化。暴露于Na(v)1.5反义寡核苷酸4天后,I(NaT)和I(NaL)分别为nsOligo处理的心室肌细胞中相应值的68±6%(平均值±标准误;n = 20,P < 0.01)和60±7%(n = 11,P < 0.018)。我们得出结论,在成年犬心脏中,Na(v)1.5钠通道具有约35小时(0.69时间常数)的“功能半衰期”,并且对I(NaL)起主要作用。

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本文引用的文献

1
Modulation of late sodium current by Ca2+, calmodulin, and CaMKII in normal and failing dog cardiomyocytes: similarities and differences.
Am J Physiol Heart Circ Physiol. 2008 Apr;294(4):H1597-608. doi: 10.1152/ajpheart.00484.2007. Epub 2008 Jan 18.
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Chronic heart failure slows late sodium current in human and canine ventricular myocytes: implications for repolarization variability.
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