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首页> 外文期刊>Science Advances >Histone deacetylases 1 and 2 silence cryptic transcription to promote mitochondrial function during cardiogenesis
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Histone deacetylases 1 and 2 silence cryptic transcription to promote mitochondrial function during cardiogenesis

机译:组蛋白脱乙酰酶1和2静音隐秘转录以促进心肌发生期间的线粒体功能

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Cryptic transcription occurs widely across the eukaryotic genome; however, its regulation during vertebrate development is not understood. Here, we show that two class I histone deacetylases, Hdac1 and Hdac2, silence cryptic transcription to promote mitochondrial function in developing murine hearts. Mice lacking Hdac1 and Hdac2 in heart exhibit defective developmental switch from anaerobic to mitochondrial oxidative phosphorylation (OXPHOS), severe defects in mitochondrial mass, mitochondrial function, and complete embryonic lethality. Hdac1/Hdac2 promotes the transition to OXPHOS by enforcing transcriptional fidelity of metabolic gene programs. Mechanistically, Hdac1/Hdac2 deacetylates histone residues including H3K23, H3K14, and H4K16 to suppress cryptic transcriptional initiation within the coding regions of actively transcribed metabolic genes. Thus, Hdac1/2-mediated epigenetic silencing of cryptic transcription is essential for mitochondrial function during early vertebrate development.
机译:隐秘转录在真核基因组上广泛发生;但是,它不了解脊椎动物发展期间的调节。在这里,我们显示两类I类组蛋白脱乙酰酶,HDAC1和HDAC2,沉默密码转录,促进开发小鼠心中的线粒体功能。缺乏HDAC1和心脏HDAC2的小鼠表现出从厌氧到线粒体氧化磷酸化(汤膦),线粒体质量,线粒体功能和完全胚胎致死性的严重缺陷的缺陷的发育开关。 HDAC1 / HDAC2通过强制实施代谢基因计划的转录保真度来促进到毒药的转变。机械地,HDAC1 / HDAC2脱乙酰酯组蛋白残基,包括H3K23,H3K14和H4K16,以抑制主动转录的代谢基因的编码区域内的隐秘转录引发。因此,HDAC1 / 2介导的隐秘转录的表观遗传沉默对于早期脊椎动物发育期间的线粒体功能至关重要。

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