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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Crystal structure of an enhancer of rudimentary homolog (ERH) at 2.1 Angstroms resolution.
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Crystal structure of an enhancer of rudimentary homolog (ERH) at 2.1 Angstroms resolution.

机译:原始同源物(ERH)增强子的晶体结构,分辨率为2.1埃。

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The enhancer of rudimentary gene, e(r), of Drosophila melanogaster encodes an enhancer of rudimentary (ER) protein with functions implicated in pyrimidine biosynthesis and the cell cycle. The ER homolog (ERH) is highly conserved among vertebrates, invertebrates, and plants. Xenopus laevis ERH was reported to be a transcriptional repressor. Here we report the 2.1 Angstroms crystal structure of murine ERH (Protein Data Bank ID 1WZ7), determined by the multiwavelength anomalous dispersion (MAD) method. The monomeric structure of ERH comprises a single domain consisting of three alpha-helices and four beta-strands, which is a novel fold. In the crystal structure, ERH assumes a dimeric structure, through interactions between the beta-sheet regions. The formation of an ERH dimer is consistent with the results of analytical ultracentrifugation. The residues at the core region and at the dimer interface are highly conserved, suggesting the conservation of the dimer formation as well as the monomer fold. The long flexible loop (44 approximately 53) is also significantly conserved, suggesting that this loop region may be important for the functions of ERH. In addition, the putative phosphorylation sites are located at the start of the beta2-strand (Thr18) and at the start of the alpha1-helix (Ser24), implying that the phosphorylation might cause some structural changes.
机译:黑腹果蝇的基本基因增强子编码具有辅助功能的嘧啶生物合成和细胞周期的基本(ER)蛋白增强子。 ER同源物(ERH)在脊椎动物,无脊椎动物和植物中高度保守。据报道非洲爪蟾ERH是转录阻遏物。在这里,我们报告了小鼠ERH(蛋白质数据库ID 1WZ7)的2.1埃晶体结构,该结构通过多波长异常色散(MAD)方法确定。 ERH的单体结构包括由三个α螺旋和四个β链组成的单个结构域,这是一个新颖的折叠。在晶体结构中,ERH通过β-折叠区域之间的相互作用呈现二聚体结构。 ERH二聚体的形成与分析超速离心的结果一致。核心区域和二聚体界面处的残基高度保守,表明保留了二聚体形式以及单体折叠。长的柔性环(44个约53个)也得到了显着保守,这表明该环区域对于ERH的功能可能很重要。此外,假定的磷酸化位点位于beta2链(Thr18)的开始和在alpha1螺旋(Ser24)的开始,这意味着磷酸化可能会引起一些结构变化。

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