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Tubastatin A inhibits HDAC and Sirtuin activity rather than being a HDAC6-specific inhibitor in mouse oocytes

机译:Tubastatin A在小鼠卵母细胞中抑制HDAC和Sirtuin活性而不是HDAC6特异性抑制剂

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摘要

Tubastatin A (TubA) is a highly selective histone deacetylase 6 (HDAC6) inhibitor. As expected, mouse germinal vesicle oocytes fail to extrude the first polar body following TubA treatment. However, a previous study demonstrated that homozygous Hdac6 knockout (KO) mice can be viable and fertile. Therefore, we asked whether TubA is indeed a specific inhibitor of HDAC6 activity. RNA-sequencing and in silico analysis demonstrated that the TubA-treated group presented significant changes in the expression of Hdac subfamily genes such as Hdac6, 10, and 11, and Sirtuin 2, 5, 6, and 7. Additionally, gene expression related to the p53, MAPK, Wnt, and Notch signaling pathways in the TubA-treated group were increased significantly; in contrast, gene expression related to metabolism, DNA replication, and oxidative phosphorylation was decreased significantly. Furthermore, gene expression related to cell cycle, cell structure, pyrimidine metabolism, pentose phosphate pathway, mitochondrial activation, proteasome pathway, RNA polymerase, DNA replication, cyclin-dependent kinase, nucleolar activity, and MI arrest were significantly decreased, indicating that TubA-induced abnormal meiotic maturation and oocyte senescence may be due to the combined effects of HDAC and Sirtuin inhibition, and not HDAC6 inhibition alone. Thus, we believed that this system could provide a model for monitoring the effects of TubA on mouse oocytes.
机译:Tubastatin A(TubA)是一种高度选择性的组蛋白脱乙酰基酶6(HDAC6)抑制剂。如预期的那样,在TubA处理后,小鼠生发囊泡卵母细胞无法挤出第一个极体。但是,以前的研究表明,纯合Hdac6基因敲除(KO)小鼠可以存活和繁殖。因此,我们询问TubA是否确实是HDAC6活性的特异性抑制剂。 RNA测序和计算机分析表明,用TubA处理的组在Hdac亚家族基因(例如Hdac6、10和11和Sirtuin 2、5、6和7)的表达中表现出显着变化。此外,与TubA治疗组的p53,MAPK,Wnt和Notch信号通路显着增加。相反,与代谢,DNA复制和氧化磷酸化有关的基因表达则明显降低。此外,与细胞周期,细胞结构,嘧啶代谢,戊糖磷酸途径,线粒体活化,蛋白酶体途径,RNA聚合酶,DNA复制,细胞周期蛋白依赖性激酶,核仁活性和MI阻滞有关的基因表达显着降低,表明TubA-诱导的异常减数分裂成熟和卵母细胞衰老可能是由于HDAC和Sirtuin抑制的联合作用,而不是单独的HDAC6抑制。因此,我们相信该系统可以为监测TubA对小鼠卵母细胞的作用提供模型。

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