Shiina Masaaki, Hamada Keisuke, Inoue-Bungo Taiko, Shimamura Mariko, Baba Shiho, Sato Ko, Ogata Kazuhiro
Department of Biochemistry, Yokohama City University Graduate School of Medicine, 3-9 Fukuura, Kanazawa-ku, Yokohama, Kanagawa 236-0004, Japan.
Department of Biochemistry, Yokohama City University School of Medicine, 3-9 Fukuura, Kanazawa-ku, Yokohama, Kanagawa 236-0004, Japan.
Acta Crystallogr F Struct Biol Commun. 2014 Oct;70(Pt 10):1380-4. doi: 10.1107/S2053230X14018470. Epub 2014 Sep 25.
Gene transcription is regulated in part through the assembly of multiple transcription factors (TFs) on gene enhancers. To enable examination of the mechanism underlying the formation of these complexes and their response to a phosphorylation signal, two kinds of higher-order TF-DNA assemblies were crystallized composed of an unmodified or phosphorylated Ets1 fragment, a Runx1(L94K) fragment and a CBFβ fragment on the T-cell receptor (TCR) α gene enhancer. Within these complexes, the Ets1 and Runx1 fragments contain intrinsically disordered regulatory regions as well as their DNA-binding domains. Crystals of the complex containing unmodified Ets1 belonged to space group P212121, with unit-cell parameters a = 78.7, b = 102.1, c = 195.0 Å, and diffracted X-rays to a resolution of 2.35 Å, and those containing phosphorylated Ets1 belonged to the same space group, with unit-cell parameters a = 78.6, b = 101.7, c = 194.7 Å, and diffracted X-rays to a similar resolution. To facilitate crystallization, a Runx1 residue involved in a hydrophobic patch that was predicted to be engaged in crystal packing based on the previously reported structures of Runx1-containing crystals was mutated.
基因转录部分是通过多种转录因子(TFs)在基因增强子上的组装来调控的。为了能够研究这些复合物形成的机制及其对磷酸化信号的反应,在T细胞受体(TCR)α基因增强子上,由未修饰或磷酸化的Ets1片段、Runx1(L94K)片段和CBFβ片段组成的两种高阶TF-DNA组装体被结晶出来。在这些复合物中,Ets1和Runx1片段既包含内在无序的调控区域,也包含它们的DNA结合结构域。含有未修饰Ets1的复合物晶体属于空间群P212121,晶胞参数a = 78.7、b = 102.1、c = 195.0 Å,X射线衍射分辨率为2.35 Å;含有磷酸化Ets1的复合物晶体属于同一空间群,晶胞参数a = 78.6、b = 101.7、c = 194.7 Å,X射线衍射分辨率相近。为了便于结晶,基于先前报道的含Runx1晶体结构预测,参与疏水补丁且预计参与晶体堆积的Runx1残基发生了突变。