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The Structural and Functional Studies of the SWIRM Domain in LSD1 and the HBD Domain in SET8.

机译:LSD1中的SWIRM域和SET8中的HBD域的结构和功能研究。

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摘要

The role of the evolutionarily conserved SWIRM domain in the lysine specific demthylase LSD1 is not well understood, as the amine oxidase domain contains the active site. It was shown here that the SWIRM domain binds histone H3 and H3 N-terminal peptides with some, but not all, of the known modifications. However, the SWIRM and amine oxidase domains must be combined to repress transcription. The NMR structure of the isolated LSD1 SWIRM domain was determined and chemical shift perturbations gave a dissociation constant of 2.3x10-4M for binding an H3 peptide. A model of the SWIRM domain and H3 peptide showed the peptide bound in a groove on the SWIRM domain located at the interface with the amine oxidase domain. These data suggest that the SWIRM domain plays an initial role in binding H3 N-terminal tails prior to activating LSD1.;Other binding partners of LSD1 have been found recently, such as human androgen receptors. Our preliminary data show that the SWIRM domain may have a direct interaction with the DNA binding domain of human androgen receptors, while other evidence needs to be provided.;The methyltransferase SET8 plays a role in regulating the cell cycle by suppressing DNA replication through histone binding. SET8 can bind to the N-terminal tail of H4 through its histone binding domain (HBD) based on our NMR titration results. Such binding has been approved to block the hyperacetylation on H4NT, focusing on residues Lys5, Lys8 and Lys12. Compared with previous determined SET family structures, HBD should belong to N-flanking domain of SET8, perhaps helping to stabilize the structure of the SET module and target on specific substrates. HBD localizes in the nucleus, especially concentrating in the nucleolus. Combined with NMR results, the residues on the C-terminal of HBD contribute a lot to the association between HBD and H4NT.
机译:由于胺氧化酶结构域含有活性位点,因此在赖氨酸特异性去甲基化酶LSD1中进化保守的SWIRM结构域的作用尚不清楚。此处显示SWIRM结构域以一些但不是全部已知修饰结合组蛋白H3和H3 N-末端肽。但是,SWIRM和胺氧化酶结构域必须结合以抑制转录。确定了分离的LSD1 SWIRM域的NMR结构,化学位移扰动给出了结合H3肽的解离常数2.3x10-4M。 SWIRM结构域和H3肽的模型显示,该肽结合在SWIRM结构域上位于与胺氧化酶结构域的界面处的凹槽中。这些数据表明,SWIRM结构域在激活LSD1之前先结合H3 N末端尾巴。LSD1的其他结合伴侣,例如人类雄激素受体,最近被发现。我们的初步数据表明,SWIRM结构域可能与人类雄激素受体的DNA结合结构域有直接相互作用,同时还需要提供其他证据。;甲基转移酶SET8通过通过组蛋白结合抑制DNA复制来调节细胞周期。根据我们的NMR滴定结果,SET8可以通过其组蛋白结合域(HBD)与H4的N末端尾巴结合。已经批准了这种结合以阻断在H4NT上的过度乙酰化,主要针对残基Lys5,Lys8和Lys12。与先前确定的SET家族结构相比,HBD应该属于SET8的N侧翼结构域,也许有助于稳定SET模块的结构并靶向特定的底物。 HBD位于细胞核中,尤其集中在核仁中。结合NMR结果,HBD C末端的残基对HBD和H4NT之间的缔合有很大贡献。

著录项

  • 作者

    Wang, Jing.;

  • 作者单位

    Hong Kong University of Science and Technology (Hong Kong).;

  • 授予单位 Hong Kong University of Science and Technology (Hong Kong).;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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