HDAC4和HDAC5与DREAM形成复合物,表观遗传下调NCX3基因,其药理抑制作用可减轻神经元卒中损伤

L. Formisano, G. Laudati, N. Guida, L. Mascolo, Angelo Serani, O. Cuomo, Maria Cantile, F. Boscia, P. Molinaro, S. Anzilotti, Vincenzo Pizzorusso, G. di Renzo, G. Pignataro, L. Annunziato
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引用次数: 11

摘要

脑卒中后组蛋白去乙酰化酶(hdac)依赖性调节Na+/Ca+交换物异构体3 (ncx3)基因转录的机制尚不清楚。过表达或低表达HDAC4/HDAC5分别下调或上调NCX3 mRNA和蛋白。同样,MC1568 (IIa类hdac抑制剂),而MS-275 (I类hdac抑制剂)没有增加NCX3启动子活性、基因和蛋白的表达。此外,HDAC4和HDAC5与转录因子下游调控元件拮抗剂(DREAM)相互作用。如MC1568, DREAM敲除阻止HDAC4和HDAC5募集到新启动子。重要的是,在短暂性大脑中动脉闭塞(tMCAO)大鼠的颞顶叶皮层中,DREAM、HDAC4和HDAC5向ncx3基因募集增加,导致ncx3启动子组蛋白去乙酰化。相反,脑室内注射siDREAM、siHDAC4和siHDAC5可以阻止tmcao诱导的NCX3减少。值得注意的是,MC1568可以防止氧葡萄糖剥夺加再氧化和tmcao诱导的神经元损伤,而其神经保护作用被ncx3敲除而消除。综上所述,我们发现:(1)DREAM/HDAC4/HDAC5复合体在脑卒中后通过表观遗传下调ncx3基因转录;(2)IIa类hdac的药理抑制可减少脑卒中诱导的神经损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HDAC4 and HDAC5 form a complex with DREAM that epigenetically down-regulates NCX3 gene and its pharmacological inhibition reduces neuronal stroke damage
The histone deacetylases (HDACs)-dependent mechanisms regulating gene transcription of the Na+/Ca+ exchanger isoform 3 (ncx3) after stroke are still unknown. Overexpression or knocking-down of HDAC4/HDAC5 down-regulates or increases, respectively, NCX3 mRNA and protein. Likewise, MC1568 (class IIa HDACs inhibitor), but not MS-275 (class I HDACs inhibitor) increased NCX3 promoter activity, gene and protein expression. Furthermore, HDAC4 and HDAC5 physically interacted with the transcription factor downstream regulatory element antagonist modulator (DREAM). As MC1568, DREAM knocking-down prevented HDAC4 and HDAC5 recruitment to the ncx3 promoter. Importantly, DREAM, HDAC4, and HDAC5 recruitment to the ncx3 gene was increased in the temporoparietal cortex of rats subjected to transient middle cerebral artery occlusion (tMCAO), with a consequent histone-deacetylation of ncx3 promoter. Conversely, the tMCAO-induced NCX3 reduction was prevented by intracerebroventricular injection of siDREAM, siHDAC4, and siHDAC5. Notably, MC1568 prevented oxygen glucose deprivation plus reoxygenation and tMCAO-induced neuronal damage, whereas its neuroprotective effect was abolished by ncx3 knockdown. Collectively, we found that: (1) DREAM/HDAC4/HDAC5 complex epigenetically down-regulates ncx3 gene transcription after stroke, and (2) pharmacological inhibition of class IIa HDACs reduces stroke-induced neurodetrimental effects.
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