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Kv4.3-Encoded Fast Transient Outward Current Is Presented in Kv4.2 Knockout Mouse Cardiomyocytes

机译:Kv4.2编码的小鼠心肌细胞中存在Kv4.3编码的快速瞬态向外电流

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摘要

Gradients of the fast transient outward K+ current (Ito,f) contribute to heterogeneity of ventricular repolarization in a number of species. Cardiac Ito,f levels and gradients change notably with heart disease. Human cardiac Ito,f appears to be encoded by the Kv4.3 pore-forming α-subunit plus the auxiliary KChIP2 β-subunit while mouse cardiac Ito,f requires Kv4.2 and Kv4.3 α-subunits plus KChIP2. Regional differences in cardiac Ito,f are associated with expression differences in Kv4.2 and KChIP2. Although Ito,f was reported to be absent in mouse ventricular cardiomyocytes lacking the Kv4.2 gene (Kv4.2-/-) when short depolarizing voltage pulses were used to activate voltage-gated K+ currents, in the present study, we showed that the use of long depolarization steps revealed a heteropodatoxin-sensitive Ito,f (at ~40% of the wild-type levels). Immunohistological studies further demonstrated membrane expression of Kv4.3 in Kv4.2-/- cardiomyocytes. Transmural Ito,f gradients across the left ventricular wall were reduced by ~3.5-fold in Kv4.2-/- heart, compared to wild-type. The Ito,f gradient in Kv4.2-/- hearts was associated with gradients in KChIP2 mRNA expression while in wild-type there was also a gradient in Kv4.2 expression. In conclusion, we found that Kv4.3-based Ito,f exists in the absence of Kv4.2, although with a reduced transmural gradient. Kv4.2-/- mice may be a useful animal model for studying Kv4.3-based Ito,f as observed in humans.
机译:快速瞬态向外K + 电流(Ito,f)的梯度有助于多种物种的心室复极化。心脏的Ito,f水平和梯度明显变化。人的心脏Ito,f似乎由Kv4.3孔形成α亚基加上辅助的KChIP2β亚基编码,而小鼠的心脏Ito,f则需要Kv4.2和Kv4.3α亚基加上KChIP2。心脏Ito,f的区域差异与Kv4.2和KChIP2的表达差异相关。虽然据报道,当使用短去极化电压脉冲激活电压门控的K + 电流时,缺少Kv4.2基因(Kv4.2-/-)的小鼠心室心肌细胞中不存在Ito,f,在本研究中,我们表明使用较长的去极化步骤可发现对异足动物毒素敏感的Ito,f(约为野生型水平的40%)。免疫组织学研究进一步证明了Kv4.2-/-心肌细胞中Kv4.3的膜表达。与野生型相比,Kv4.2-/-心脏中跨左心室壁的透壁Ito,f梯度降低了约3.5倍。 Kv4.2-/-心脏中的Ito,f梯度与KChIP2 mRNA表达的梯度相关,而在野生型中Kv4.2表达也存在梯度。总之,我们发现基于Kv4.3的Ito,f在缺乏Kv4.2的情况下存在,尽管其透壁梯度降低。如在人类中观察到的那样,Kv4.2-/-小鼠可能是研究基于Kv4.3的Ito,f的有用动物模型。

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