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成年小鼠心脏杂合 Cav1.2 基因敲除后 L 型钙电流表达增强。

Robust L-type calcium current expression following heterozygous knockout of the Cav1.2 gene in adult mouse heart.

机构信息

Department of Physiology and Biophysics, BST Room 124, Level 6, Stony Brook University, Stony Brook, NY 11794-8661, USA.

出版信息

J Physiol. 2011 Jul 1;589(Pt 13):3275-88. doi: 10.1113/jphysiol.2011.210237. Epub 2011 Apr 26.

Abstract

Mechanisms that contribute to maintaining expression of functional ion channels at relatively constant levels following perturbations of channel biosynthesis are likely to contribute significantly to the stability of electrophysiological systems in some pathological conditions. In order to examine the robustness of L-type calcium current expression, the response to changes in Ca²⁺ channel Cav1.2 gene dosage was studied in adult mice. Using a cardiac-specific inducible Cre recombinase system, Cav1.2 mRNA was reduced to 11 ± 1% of control values in homozygous floxed mice and the mice died rapidly (11.9 ± 3 days) after induction of gene deletion. In these homozygous knockout mice, echocardiographic analysis showed that myocardial contractility was reduced to 14 ± 1% of control values shortly before death. For these mice, no effective compensatory changes in ion channel gene expression were triggered following deletion of both Cav1.2 alleles, despite the dramatic decay in cardiac function. In contrast to the homozygote knockout mice, following knockout of only one Cav1.2 allele, cardiac function remained unchanged, as did survival.Cav1.2mRNAexpression in the left ventricle of heterozygous knockout mice was reduced to 58 ± 3% of control values and there was a 21 ± 2% reduction in Cav1.2 protein expression. There was no significant reduction in L-type Ca²⁺ current density in these mice. The results are consistent with a model of L-type calcium channel biosynthesis in which there are one or more saturated steps, which act to buffer changes in both total Cav1.2 protein and L-type current expression.

摘要

在通道生物合成受到干扰后,有助于维持功能性离子通道表达水平相对恒定的机制可能会显著影响某些病理条件下电生理系统的稳定性。为了研究 L 型钙电流表达的稳健性,研究了成年小鼠中钙通道 Cav1.2 基因剂量变化的反应。使用心脏特异性诱导型 Cre 重组酶系统,在纯合 floxed 小鼠中,Cav1.2 mRNA 减少到对照值的 11 ± 1%,并且在基因缺失诱导后小鼠迅速死亡(11.9 ± 3 天)。在这些纯合敲除小鼠中,超声心动图分析显示,心肌收缩力在死亡前短时间内降低到对照值的 14 ± 1%。对于这些小鼠,尽管心脏功能明显下降,但在 Cav1.2 两个等位基因缺失后,离子通道基因表达没有触发有效的代偿性变化。与纯合敲除小鼠相反,在敲除一个 Cav1.2 等位基因后,心脏功能保持不变,存活率也没有变化。在杂合敲除小鼠的左心室中,Cav1.2mRNA 的表达减少到对照值的 58 ± 3%,Cav1.2 蛋白的表达减少了 21 ± 2%。在这些小鼠中,L 型 Ca²⁺电流密度没有显著降低。这些结果与 L 型钙通道生物合成模型一致,该模型中有一个或多个饱和步骤,可以缓冲 Cav1.2 总蛋白和 L 型电流表达的变化。

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