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A Conserved Interaction between the SDI Domain of Bre2 and the Dpy-30 Domain of Sdc1 Is Required for Histone Methylation and Gene Expression

机译:组蛋白甲基化和基因表达需要Bre2的SDI域和Sdc1的Dpy-30域之间的保守相互作用

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摘要

In Saccharomyces cerevisiae, lysine 4 on histone H3 (H3K4) is methylated by the Set1 complex (Set1C or COMPASS). Besides the catalytic Set1 subunit, several proteins that form the Set1C (Swd1, Swd2, Swd3, Spp1, Bre2, and Sdc1) are also needed to mediate proper H3K4 methylation. Until this study, it has been unclear how individual Set1C members interact and how this interaction may impact histone methylation and gene expression. In this study, Bre2 and Sdc1 are shown to directly interact, and it is shown that the association of this heteromeric complex is needed for proper H3K4 methylation and gene expression to occur. Interestingly, mutational and biochemical analysis identified the C terminus of Bre2 as a critical protein-protein interaction domain that binds to the Dpy-30 domain of Sdc1. Using the human homologs of Bre2 and Sdc1, ASH2L and DPY-30, respectively, we demonstrate that the C terminus of ASH2L also interacts with the Dpy-30 domain of DPY-30, suggesting that this protein-protein interaction is maintained from yeast to humans. Because of the functionally conserved nature of the C terminus of Bre2 and ASH2L, this region was named the SDI (Sdc1 Dpy-30 interaction) domain. Finally, we show that the SDI-Dpy-30 domain interaction is physiologically important for the function of Set1 in vivo, because specific disruption of this interaction prevents Bre2 and Sdc1 association with Set1, resulting in H3K4 methylation defects and decreases in gene expression. Overall, these and other mechanistic studies on how H3K4 methyltransferase complexes function will likely provide insights into how human MLL and SET1-like complexes or overexpression of ASH2L leads to oncogenesis.
机译:在酿酒酵母中,组蛋白H3(H3K4)上的赖氨酸4被Set1复合物(Set1C或COMPASS)甲基化。除了催化Set1亚基外,还需要形成Set1C的几种蛋白质(Swd1,Swd2,Swd3,Spp1,Bre2和Sdc1)来介导适当的H3K4甲基化。在这项研究之前,尚不清楚各个Set1C成员如何相互作用以及这种相互作用如何影响组蛋白甲基化和基因表达。在这项研究中,Bre2和Sdc1被证明是直接相互作用的,并且表明这种异聚复合物的缔合是正确的H3K4甲基化和基因表达发生所必需的。有趣的是,突变和生化分析确定Bre2的C末端为与Sdc1的Dpy-30结构域结合的关键蛋白质-蛋白质相互作用结构域。分别使用Bre2和Sdc1,ASH2L和DPY-30的人类同源物,我们证明ASH2L的C末端也与DPY-30的Dpy-30结构域相互作用,这表明这种蛋白质与蛋白质之间的相互作用从酵母到人类。由于Bre2和ASH2L的C末端在功能上是保守的,因此将该区域命名为SDI(Sdc1 Dpy-30相互作用)域。最后,我们显示SDI-Dpy-30结构域相互作用对于Set1在体内的功能具有重要的生理意义,因为这种相互作用的特异性破坏阻止了Bre2和Sdc1与Set1的缔合,从而导致H3K4甲基化缺陷并降低了基因表达。总的来说,这些和其他有关H3K4甲基转移酶复合物功能的机理研究可能会提供有关人类MLL和SET1样复合物或ASH2L过表达如何导致肿瘤发生的见解。

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