School of Life Sciences, Pharmacy and Chemistry, Faculty of Science Engineering and Computing, Kingston University, Penrhyn Road, Kingston-upon-Thames, Surrey, KT1 2EE, UK.
Sci Rep. 2021 Mar 18;11(1):6293. doi: 10.1038/s41598-021-85616-5.
The type 2A protein phosphatase regulatory protein alpha4 (α4) constitutes an anti-apoptotic protein in non-cardiac tissue, however it's anti-apoptotic properties in the heart are poorly defined. To this end, we knocked down α4 protein expression (α4 KD) using siRNA in cultured H9c2 cardiomyocytes and confirmed the lack of DNA damage/cell death by TUNEL staining and MTT assay. However, α4 KD did increase the phosphorylation of p53 and ATM/ATR substrates, decreased the expression of poly ADP-ribose polymerase and associated fragments. Expression of anti-apoptotic proteins Bcl-2 and Bcl-xL was reduced, whereas expression of pro-apoptotic BAX protein did not change. Alpha4 KD reduced basal H2AX Ser139 phosphorylation, whereas adenoviral-mediated re-expression of α4 protein following α4 KD, restored basal H2AX phosphorylation at Ser139. The sensitivity of H9c2 cardiomyocytes to doxorubicin-induced DNA damage and cytotoxicity was augmented by α4 KD. Adenoviral-mediated overexpression of α4 protein in ARVM increased PP2AC expression and augmented H2AX Ser139 phosphorylation in response to doxorubicin. Furthermore, pressure overload-induced heart failure was associated with reduced α4 protein expression, increased ATM/ATR protein kinase activity, increased H2AX expression and Ser139 phosphorylation. Hence, this study describes the significance of altered α4 protein expression in the regulation of DNA damage, cardiomyocyte cell death and heart failure.
2A 型蛋白磷酸酶调节蛋白 α4(α4)在非心脏组织中构成一种抗凋亡蛋白,但它在心脏中的抗凋亡特性尚未明确。为此,我们使用 siRNA 在培养的 H9c2 心肌细胞中敲低α4 蛋白表达(α4 KD),并通过 TUNEL 染色和 MTT 测定确认缺乏 DNA 损伤/细胞死亡。然而,α4 KD 确实增加了 p53 和 ATM/ATR 底物的磷酸化,降低了多聚 ADP-核糖聚合酶的表达及其相关片段。抗凋亡蛋白 Bcl-2 和 Bcl-xL 的表达减少,而促凋亡 BAX 蛋白的表达没有变化。α4 KD 降低了基础 H2AX Ser139 磷酸化,而在 α4 KD 后,通过腺病毒介导的 α4 蛋白再表达,恢复了基础 H2AX 在 Ser139 处的磷酸化。α4 KD 增加了 H9c2 心肌细胞对阿霉素诱导的 DNA 损伤和细胞毒性的敏感性。在 ARVM 中,腺病毒介导的 α4 蛋白过表达增加了 PP2AC 表达,并增强了对阿霉素的 H2AX Ser139 磷酸化。此外,压力超负荷诱导的心力衰竭与 α4 蛋白表达减少、ATM/ATR 蛋白激酶活性增加、H2AX 表达增加和 Ser139 磷酸化增加有关。因此,本研究描述了改变的 α4 蛋白表达在调节 DNA 损伤、心肌细胞死亡和心力衰竭中的重要性。