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首页> 外文期刊>Biochemistry >The Arabidopsis Histone Methyltransferase SUVR4 Binds Ubiquitin via a Domain with a Four-Helix Bundle Structure
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The Arabidopsis Histone Methyltransferase SUVR4 Binds Ubiquitin via a Domain with a Four-Helix Bundle Structure

机译:拟南芥组蛋白甲基转移酶SUVR4通过具有四螺旋束结构的结构域结合泛素

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摘要

In eukaryotes, different chromatin states facilitate or repress gene expression and restrict the activity of transposable elements. Post-translational modifications (PTMs) of amino acid residues on the N-terminal tails of histones are suggested to define such states. The histone lysine methyltransferase (HKMTase) SU(VAR)3-9 RELATED4 (SUVR4) of Arabidopsis thaliana functions as a repressor of transposon activity. Binding of ubiquitin by the WIYLD domain facilitates the addition of two methyl groups to monomethylated lysine 9 of histone H3. By using nuclear magnetic resonance (NMR) spectroscopy, we identified SUVR4 WIYLD (S4WIYLD) as a domain with a four-helix bundle structure, in contrast to three-helix bundles of other ubiquitin binding domains. NMR titration analyses showed that residues of helix α1 (Q38, L39, and D40) and helix α4 (N68, T70, A71, V73, D74, I76, S78, and E82) of S4WIYLD and residues between the first and second β-strands (T9 and G10) and on β-strands 3 (R42, G47, K48, and Q49) and 4 (H68, R72, and L73) undergo significant chemical shift changes when the two proteins interact. A model of the complex, generated using HADDOCK, suggests that the N-terminal and C-terminal parts of S4WIYLD constitute a surface that interacts with charged residues close to the hydrophobic patch of ubiquitin. The WIYLD domains of the closely related SUVR1 and SUVR2 Arabidopsis proteins also bind ubiquitin, indicating that this is a general feature of this domain. The question of whether SUVR proteins act as both readers of monoubiquitinated H2B and writers of histone PTMs is discussed.
机译:在真核生物中,不同的染色质状态促进或抑制基因表达并限制转座因子的活性。建议在组蛋白N末端尾部氨基酸残基进行翻译后修饰(PTM),以定义此类状态。拟南芥的组蛋白赖氨酸甲基转移酶(HKMTase)SU(VAR)3-9 RELATED4(SUVR4)可以抑制转座子的活性。 WIYLD结构域结合泛素促进了两个甲基基团H3的单甲基化赖氨酸9的添加。通过使用核磁共振(NMR)光谱,我们将SUVR4 WIYLD(S4WIYLD)确定为具有四螺旋束结构的域,与其他遍在蛋白结合域的三螺旋束相反。 NMR滴定分析显示S4WIYLD的螺旋α1(Q38,L39和D40)和螺旋α4(N68,T70,A71,V73,D74,I76,S78和E82)的残基以及第一和第二条β链之间的残基(T9和G10)和β链3(R42,G47,K48和Q49)和4(H68,R72和L73)的蛋白质链发生相互作用时,它们的化学位移发生了显着变化。使用HADDOCK生成的复合物模型表明,S4WIYLD的N端和C端部分构成了一个表面,该表面与带电荷的残基相互作用,该残基靠近遍在蛋白的疏水斑点。紧密相关的SUVR1和SUVR2拟南芥蛋白的WIYLD域也结合泛素,表明这是该域的一般特征。讨论了SUVR蛋白是否同时充当单泛素化H2B的读者和组蛋白PTM的作者的问题。

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