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HDAC4 Degradation Mediates HDAC Inhibition-Induced Protective Effects Against Hypoxia/Reoxygenation Injury

机译:HDAC4降解介导HDAC抑制针对缺氧/复氧损伤的保护作用

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摘要

Histone deacetylases (HDACs) play a crucial role in the regulation of gene expression through remodeling of chromatin structures. However, the molecular mechanisms involved in this event remain unknown. In this study, we sought to examine whether HDAC inhibition-mediated protective effects involved HDAC4 sumoylation, degradation, and the proteasome pathway. Isolated neonatal mouse ventricular myocytes (NMVM) and H9c2 cardiomyoblasts were subjected to 48 h of hypoxia (H) (1% O2) and 2 h of reoxygenation (R). Treatment of cardiomyocytes with trichostatin A (TSA) attenuated H/R-elicited injury, as indicated by a reduction of lactate dehydrogenase (LDH) leakage, an increase in cell viability, and decrease in apoptotic positive cardiomyocytes. MG132, a potent proteasome pathway inhibitor, abrogated TSA-induced protective effects, which was associated with the accumulation of ubiquitinated HDAC4.NMVMtransduced with adenoviral HDAC4 led to an exaggeration of H/R-induced injury. TSA treatment resulted in a decrease in HDAC4 in cardiomyocytes infected with adenoviral HDAC4, and HDAC4-induced injury was attenuated by TSA. HDAC inhibition resulted in a significant reduction in reactive oxygen species (ROS) in cardiomyoblasts exposed to H/R, which was attenuated by blockade of the proteasome pathway. Cardiomyoblasts carrying wild type and sumoylation mutation (K559R) were established to examine effects of HDAC4 sumoylation and ubiquitination on H/R injury. Disruption of HDAC4 sumoylation brought about HDAC4 accumulation and impairment of HDAC4 ubiquitination in association with enhanced susceptibility of cardiomyoblasts to H/R. Taken together, these results demonstrated that HDAC inhibition stimulates proteasome dependent degradation of HDAC4, which is associated with HDAC4 sumoylation to induce these protective effects.
机译:组蛋白脱乙酰基酶(HDAC)通过染色质结构的重塑在基因表达的调节中起关键作用。但是,此事件涉及的分子机制仍然未知。在这项研究中,我们试图检查HDAC抑制介导的保护作用是否涉及HDAC4的磺酰化,降解和蛋白酶体途径。对分离的新生鼠心室肌细胞(NMVM)和H9c2心肌母细胞进行48 h缺氧(H)(1%O2)和2 h复氧(R)。乳酸脱氢酶(LDH)渗漏减少,细胞活力增加和凋亡阳性心肌细胞减少表明,用曲古抑菌素A(TSA)处理心肌细胞可减轻H / R引起的损伤。 MG132是一种有效的蛋白酶体途径抑制剂,它消除了TSA诱导的保护作用,这与泛素化的HDAC4的积累有关。腺病毒HDAC4转导的NMVM导致H / R诱导的损伤过度。 TSA处理导致腺病毒HDAC4感染的心肌细胞中HDAC4减少,TSA减轻了HDAC4诱导的损伤。 HDAC抑制导致暴露于H / R的心肌母细胞中的活性氧(ROS)显着降低,这被蛋白酶体途径的阻断所减弱。建立带有野生型和磺酰化突变(K559R)的心肌母细胞,以检查HDAC4磺酰化和泛素化对H / R损伤的影响。 HDAC4 sumoylation的破坏导致HDAC4的积累和HDAC4泛素化的损害,并增加了心肌母细胞对H / R的敏感性。综上所述,这些结果表明,HDAC抑制刺激了蛋白酶体依赖性的HDAC4降解,这与HDAC4的磺酰化作用有关,从而诱导了这些保护作用。

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