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Class I HDAC inhibition is a novel pathway for regulating astrocytic apoE secretion

机译:I类HDAC抑制是一种用于调节星形胶质细胞分泌物的新途径

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Despite the important role of apolipoprotein E (apoE) secretion from astrocytes in brain lipid metabolism and the strong association of apoE4, one of the human apoE isoforms, with sporadic and late onset forms of Alzheimer's disease (AD) little is known about the regulation of astrocytic apoE. Utilizing annotated chemical libraries and a phenotypic screening strategy that measured apoE secretion from a human astrocytoma cell line, inhibition of pan class I histone deacetylases (HDACs) was identified as a mechanism to increase apoE secretion. Knocking down select HDAC family members alone or in combination revealed that inhibition of the class I HDAC family was responsible for enhancing apoE secretion. Knocking down LXR alpha and LXR beta genes revealed that the increase in astrocytic apoE in response to HDAC inhibition occurred via an LXR-independent pathway. Collectively, these data suggest that pan class I HDAC inhibition is a novel pathway for regulating astrocytic apoE secretion.
机译:尽管载脂蛋白e(apoe)分泌来自脑脂质代谢的星形胶质细胞的重要作用和apoe4的强烈关联,人类Apoe同种型之一,具有散发性和晚期的阿尔茨海默病(Ad)的疾病(广告)几乎是关于调节的 星形胶质细胞at a。 利用注释的化学文库和从人星形细胞瘤细胞中测量的Apoe分泌的表型筛选策略,鉴定了PAN类I组蛋白脱乙酰酶(HDACs)的抑制作用以增加APOE分泌的机制。 单独敲打选择HDAC家庭成员或组合揭示了I类HDAC家族的抑制负责增强Apoe分泌。 敲击LXRα和LXRβ基因显示,通过LXR无关的途径发生过度抑制HDAC抑制的星形胶质型ApoE的增加。 总的来说,这些数据表明,PAN类I HDAC抑制是一种用于调节星形胶质细胞分泌物的新途径。

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