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首页> 外文期刊>Journal of Cell Science >Depletion of histone deacetylase 3 antagonizes PI3K-mediated overgrowth of Drosophila organs through the acetylation of histone H4 at lysine 16
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Depletion of histone deacetylase 3 antagonizes PI3K-mediated overgrowth of Drosophila organs through the acetylation of histone H4 at lysine 16

机译:通过赖氨酸16的组蛋白H4的乙酰化致拮抗Pi3K介导的果蝇器官的过度生长的PI3K介导的过度生长

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摘要

Core histone modifications play an important role in chromatin remodeling and transcriptional regulation. Histone acetylation is one of the best-studied gene modifications and has been shown to be involved in numerous important biological processes. Herein, we demonstrated that the depletion of histone deacetylase 3 (Hdac3) in Drosophila melanogaster resulted in a reduction in body size. Further genetic studies showed that Hdac3 counteracted the organ overgrowth induced by overexpression of insulin receptor (InR), phosphoinositide 3-kinase (PI3K) or S6 kinase (S6K), and the growth regulation by Hdac3 was mediated through the deacetylation of histone H4 at lysine 16 (H4K16). Consistently, the alterations of H4K16 acetylation (H4K16ac) induced by the overexpression or depletion of males-absent-on-the-first (MOF), a histone acetyltransferase that specifically targets H4K16, resulted in changes in body size. Furthermore, we found that H4K16ac was modulated by PI3K signaling cascades. The activation of the PI3K pathway caused a reduction in H4K16ac, whereas the inactivation of the PI3K pathway resulted in an increase in H4K16ac. The increase in H4K16ac by the depletion of Hdac3 counteracted the PI3K-induced tissue overgrowth and PI3K-mediated alterations in the transcription profile. Overall, our studies indicated that Hdac3 served as an important regulator of the PI3K pathway and revealed a novel link between histone acetylation and growth control.
机译:核心组蛋白修饰起到染色质重塑和转录调控中起重要作用。组蛋白乙酰化是研究最多的基因修饰之一,并已被证明是参与了许多重要的生物学过程。在本文中,我们表明,组蛋白的脱乙酰酶耗尽3(HDAC3)在果蝇导致车身尺寸的减小。进一步的遗传研究表明,HDAC3抵消由胰岛素受体的过表达(INR),磷酸肌醇3-激酶(PI3K)或S6激酶(S6K),以及由HDAC3生长调节引起的器官过度生长通过组蛋白H4中的赖氨酸的脱乙酰化物介导的16(H4K16)。一致地,H4K16乙酰化由过表达或雄性-缺席 - 上的一(MOF)的耗尽所引起的改变(H4K16ac),组蛋白乙酰转移酶特异性靶向H4K16,导致体大小的变化。此外,我们发现,H4K16ac是通过PI3K信号通路调节。 PI3K途径的激活引起H4K16ac的减少,而PI3K途径的失活导致增加在H4K16ac。通过HDAC3的耗竭H4K16ac的增加抵消中,转录概况的PI3K引起的组织过度生长和PI3K介导的变化。总的来说,我们的研究表明,HDAC3担任PI3K途径的重要调节因子,揭示组蛋白乙酰化和生长控制之间的新联系。

著录项

  • 来源
    《Journal of Cell Science》 |2012年第22期|共10页
  • 作者单位

    Institute of Epigenetics and Cancer Research School of Medicine Tsinghua University Beijing;

    Institute of Epigenetics and Cancer Research School of Medicine Tsinghua University Beijing;

    Institute of Epigenetics and Cancer Research School of Medicine Tsinghua University Beijing;

    Institute of Epigenetics and Cancer Research School of Medicine Tsinghua University Beijing;

    Institute of Epigenetics and Cancer Research School of Medicine Tsinghua University Beijing;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

    Body size; Drosophila; H4K16 acetylation; Histone deacetylase 3; PI3K signaling;

    机译:体型;果蝇;H4K16乙酰化;组蛋白脱乙酰酶3;PI3K信号传导;

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