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Early growth response 1 is an early signal inducing Cav3.2 T-type calcium channels during cardiac hypertrophy

机译:早期生长反应1是在心肌肥大过程中诱导Cav3.2 T型钙通道的早期信号

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Aims: The Cav3.2 T-channel plays a pivotal role in inducing calcineurinuclear factor of activated T cell (NFAT) signalling during cardiac hypertrophy. Because calcineurin/NFAT signalling is induced early after pressure overload, we hypothesized that Cav3.2 is induced by an early signal. Our aim is to investigate when and how Cav3.2 is induced during cardiac hypertrophy. Methods and results: The evolutionary conserved promoter Cav3.2-3500 from mouse genome was validated to express the reporter gene as endogenous Cav3.2 in cell lines and transgenic (Tg; Ca v3.2-3500-Luc) mice. The early induction of luciferase in Tg mice and Cav3.2 mRNA in wild-type mice after transverse aortic banding (TAB) surgery supported our hypothesis that Cav3.2 is induced early during cardiac hypertrophy. The TAB-responding element [-81 to -41 bp upstream of the transcription start site (TSS) of mouse Cav3.2] was identified by in vivo gene transfer by injecting reporter constructs into the left ventricle followed by TAB surgery. Electrophoresis mobility shift assay and chromatin immunoprecipitation assays revealed that Egr1 bound to the TAB-responding element of Cav3.2. Egr1 level was increased with increased Ca v3.2 mRNA level at 3 days after TAB. To demonstrate that Egr1 indeed regulates Cav3.2 expression after hypertrophic stimulation, knockdown of Egr1 with short hairpin RNA prevented the phenylephrine-induced up-regulation of Cav3.2 expression and cellular hypertrophy in neonatal rat ventricular myocytes (NRVMs) and H9c2 cells. Furthermore, overexpression of Cav3.2 in Egr1-knockdown cells restored the phenylephrine-induced hypertrophy. Conclusion: Cav3.2 is induced early by Egr1 during cardiac hypertrophy and Cav3.2 is an important mediator of Egr1 in regulating cardiac hypertrophy.
机译:目的:Cav3.2 T通道在心脏肥大过程中在诱导钙调神经磷酸酶/活化T细胞(NFAT)信号的核因子中起关键作用。由于钙调神经磷酸酶/ NFAT信号是在压力超负荷后早期诱导的,因此我们假设Cav3.2是由早期信号诱导的。我们的目的是研究心脏肥大期间何时以及如何诱导Cav3.2。方法和结果:验证了小鼠基因组中进化保守的启动子Cav3.2-3500在细胞系和转基因(Tg; Ca v3.2-3500-Luc)小鼠中将报告基因表达为内源性Cav3.2。横断主动脉束带(TAB)手术后,Tg小鼠中萤光素酶的早期诱导和野生型小鼠中Cav3.2 mRNA的早期诱导支持了我们的假设,即在心脏肥大期间早期诱导了Cav3.2。通过体内基因转移,通过将报告基因构建体注入左心室,然后进行TAB手术,通过体内基因转移来鉴定TAB响应元件[在小鼠Cav3.2转录起始位点(TSS)上游-81至-41 bp]。电泳迁移率变动分析和染色质免疫沉淀分析表明,Egr1绑定到Cav3.2的TAB响应元件。 TAB后3天,随着Ca v3.2 mRNA水平的升高,Egr1水平升高。为了证明肥大刺激后Egr1确实调节Cav3.2表达,用短发夹RNA敲低Egr1可以防止去氧肾上腺素诱导的新生大鼠心室肌细胞(NRVM)和H9c2细胞中Cav3.2表达的上调和细胞肥大。此外,Egr1基因敲低细胞中Cav3.2的过表达恢复了去氧肾上腺素诱导的肥大。结论:Eav1在心脏肥大过程中早期诱导Cav3.2,Cav3.2是Egr1在调节心脏肥大过程中的重要介体。

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