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结核分枝杆菌双结构域IdeR的晶体结构、金属激活及DNA结合特性

Crystal structures, metal activation, and DNA-binding properties of two-domain IdeR from Mycobacterium tuberculosis.

作者信息

Wisedchaisri Goragot, Chou C James, Wu Meiting, Roach Claudia, Rice Adrian E, Holmes Randall K, Beeson Craig, Hol Wim G J

机构信息

Department of Biochemistry and Biomolecular Structure Center, University of Washington, Seattle, Washington 98195, USA.

出版信息

Biochemistry. 2007 Jan 16;46(2):436-47. doi: 10.1021/bi0609826.

Abstract

The iron-dependent regulator IdeR is a key transcriptional regulator of iron uptake in Mycobacterium tuberculosis. In order to increase our insight into the role of the SH3-like third domain of this essential regulator, the metal-binding and DNA-binding properties of two-domain IdeR (2D-IdeR) whose SH3-like domain has been truncated were characterized. The equilibrium dissociation constants for Co2+ and Ni2+ activation of 2D-IdeR for binding to the fxbA operator and the DNA-binding affinities of 2D-IdeR in the presence of excess metal ions were estimated using fluorescence spectroscopy. 2D-IdeR binds to fxbA operator DNA with similar affinity as full-length IdeR in the presence of excess metal ion. However, the Ni2+ concentrations required to activate 2D-IdeR for DNA binding appear to be smaller than that for full-length IdeR while the concentration of Co2+ required for activation remains the same. We have determined the crystal structures of Ni2+-activated 2D-IdeR at 1.96 A resolution and its double dimer complex with the mbtA-mbtB operator DNA in two crystal forms at 2.4 A and 2.6 A, the highest resolutions for DNA complexes for any structures of iron-dependent regulator family members so far. The 2D-IdeR-DNA complex structures confirm the specificity of Ser37 and Pro39 for thymine bases and suggest preferential contacts of Gln43 to cytosine bases of the DNA. In addition, our 2D-IdeR structures reveal a remarkable property of the TEV cleavage sequence remaining after removal of the C-terminal His6. This C-terminal tail promotes crystal contacts by forming a beta-sheet with the corresponding tail of neighboring subunits in two unrelated structures of 2D-IdeR, one with and one without DNA. The contact-promoting properties of this C-terminal TEV cleavage sequence may be beneficial for crystallizing other proteins.

摘要

铁依赖性调节因子IdeR是结核分枝杆菌中铁摄取的关键转录调节因子。为了更深入了解这个重要调节因子的类SH3第三结构域的作用,对其类SH3结构域已被截短的双结构域IdeR(2D-IdeR)的金属结合和DNA结合特性进行了表征。使用荧光光谱法估算了2D-IdeR结合fxbA操纵子的Co2+和Ni2+激活的平衡解离常数,以及在过量金属离子存在下2D-IdeR的DNA结合亲和力。在过量金属离子存在下,2D-IdeR与fxbA操纵子DNA的结合亲和力与全长IdeR相似。然而,激活2D-IdeR进行DNA结合所需的Ni2+浓度似乎比全长IdeR小,而激活所需的Co2+浓度保持不变。我们已经确定了Ni2+激活的2D-IdeR在1.96 Å分辨率下的晶体结构,以及它与mbtA-mbtB操纵子DNA形成的双二聚体复合物在两种晶体形式下分别为2.4 Å和2.6 Å的晶体结构,这是迄今为止铁依赖性调节因子家族成员任何结构的DNA复合物的最高分辨率。2D-IdeR-DNA复合物结构证实了Ser37和Pro39对胸腺嘧啶碱基的特异性,并表明Gln43与DNA胞嘧啶碱基的优先接触。此外,我们的2D-IdeR结构揭示了去除C端His6后剩余的TEV切割序列的一个显著特性。这个C端尾巴通过在2D-IdeR的两个不相关结构中与相邻亚基的相应尾巴形成β-折叠来促进晶体接触,其中一个结构有DNA,另一个没有。这个C端TEV切割序列的接触促进特性可能有利于其他蛋白质的结晶。

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