首页> 美国卫生研究院文献>PLoS Clinical Trials >Disruption of a GATA4/Ankrd1 Signaling Axis in Cardiomyocytes Leads to Sarcomere Disarray: Implications for Anthracycline Cardiomyopathy
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Disruption of a GATA4/Ankrd1 Signaling Axis in Cardiomyocytes Leads to Sarcomere Disarray: Implications for Anthracycline Cardiomyopathy

机译:GATA4 / Ankrd1信号轴在心肌细胞中的破坏导致肌节紊乱:对蒽环类心肌病的影响。

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摘要

Doxorubicin (Adriamycin) is an effective anti-cancer drug, but its clinical usage is limited by a dose-dependent cardiotoxicity characterized by widespread sarcomere disarray and loss of myofilaments. Cardiac ankyrin repeat protein (CARP, ANKRD1) is a transcriptional regulatory protein that is extremely susceptible to doxorubicin; however, the mechanism(s) of doxorubicin-induced CARP depletion and its specific role in cardiomyocytes have not been completely defined. We report that doxorubicin treatment in cardiomyocytes resulted in inhibition of CARP transcription, depletion of CARP protein levels, inhibition of myofilament gene transcription, and marked sarcomere disarray. Knockdown of CARP with small interfering RNA (siRNA) similarly inhibited myofilament gene transcription and disrupted cardiomyocyte sarcomere structure. Adenoviral overexpression of CARP, however, was unable to rescue the doxorubicin-induced sarcomere disarray phenotype. Doxorubicin also induced depletion of the cardiac transcription factor GATA4 in cardiomyocytes. CARP expression is regulated in part by GATA4, prompting us to examine the relationship between GATA4 and CARP in cardiomyocytes. We show in co-transfection experiments that GATA4 operates upstream of CARP by activating the proximal CARP promoter. GATA4-siRNA knockdown in cardiomyocytes inhibited CARP expression and myofilament gene transcription, and induced extensive sarcomere disarray. Adenoviral overexpression of GATA4 (AdV-GATA4) in cardiomyocytes prior to doxorubicin exposure maintained GATA4 levels, modestly restored CARP levels, and attenuated sarcomere disarray. Interestingly, siRNA-mediated depletion of CARP completely abolished the Adv-GATA4 rescue of the doxorubicin-induced sarcomere phenotype. These data demonstrate co-dependent roles for GATA4 and CARP in regulating sarcomere gene expression and maintaining sarcomeric organization in cardiomyocytes in culture. The data further suggests that concurrent depletion of GATA4 and CARP in cardiomyocytes by doxorubicin contributes in large part to myofibrillar disarray and the overall pathophysiology of anthracycline cardiomyopathy.
机译:阿霉素(阿霉素)是一种有效的抗癌药,但其临床使用受到剂量依赖性心脏毒性的限制,该毒性的特征是广泛的肌节紊乱和肌丝丢失。心脏锚蛋白重复蛋白(CARP,ANKRD1)是一种转录调节蛋白,对阿霉素极易敏感。但是,阿霉素诱导的CARP耗竭的机制及其在心肌细胞中的特定作用尚未完全确定。我们报告在心肌细胞中阿霉素治疗导致抑制CARP转录,消耗CARP蛋白水平,抑制肌丝基因转录和明显的肌节紊乱。敲除小干扰RNA(siRNA)的CARP同样抑制了肌丝基因转录并破坏了心肌肌小节的结构。然而,腺病毒过度表达CARP无法挽救阿霉素诱导的肌小节紊乱表型。阿霉素还诱导心肌细胞中心脏转录因子GATA4的消耗。 CARP的表达部分受GATA4调控,促使我们研究心肌细胞中GATA4与CARP之间的关系。我们在共转染实验中显示,GATA4通过激活近端CARP启动子在CARP上游运行。心肌细胞中的GATA4-siRNA抑制可抑制CARP表达和肌丝基因转录,并​​引起广泛的肌节紊乱。在暴露阿霉素之前,心肌细胞中腺病毒GATA4(AdV-GATA4)的过表达保持了GATA4的水平,适度恢复了CARP的水平,并减轻了肌节紊乱。有趣的是,siRNA介导的CARP消耗完全消除了阿霉素诱导的肌小节表型的Adv-GATA4拯救。这些数据证明了GATA4和CARP在调节培养的心肌细胞中肌小节蛋白基因表达和维持肌节组织中的相互依赖性作用。数据进一步表明,阿霉素同时消耗心肌细胞中的GATA4和CARP在很大程度上导致了肌原纤维紊乱和蒽环类心肌病的整体病理生理。

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