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首页> 外文期刊>Biochemistry >Multiple Conformations of the Cytidine Repressor DNA-Binding Domain Coalesce to One upon Recognition of a Specific DNA Surface
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Multiple Conformations of the Cytidine Repressor DNA-Binding Domain Coalesce to One upon Recognition of a Specific DNA Surface

机译:识别特定DNA表面后,胞嘧啶阻遏物DNA结合域的多个构象合并为一个。

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摘要

The cytidine repressor (CytR) is a member of the LacR family of bacterial repressors with distinct functional features. The Escherichia coli CytR regulon comprises nine operons whose palindromic operators vary in both sequence and, most significantly, spacing between the recognition half-sites. This suggests a strong likelihood that protein folding would be coupled to DNA binding as a mechanism to accommodate the variety of different operator architectures to which CytR is targeted. Such coupling is a common feature of sequence-specific DNA-binding proteins, including the LacR family repressors; however, there are no significant structural rearrangements upon DNA binding within the three-helix DNA-binding domains (DBDs) studied to date. We used nuclear magnetic resonance (NMR) spectroscopy to characterize the CytR DBD free in solution and to determine the high-resolution structure of a CytR DBD monomer bound specifically to oneDNAhalf-site of the uridine phosphorylase (udp) operator. We find that the free DBDpopulates multiple distinct conformations distinguished by up to four sets of NMR peaks per residue. This structural heterogeneity is previously unknown in the LacR family. These stable structures coalesce into a single, more stable udp-bound form that features a three-helix bundle containing a canonical helix-turn-helix motif. However, this structure differs from all other LacR family members whose structures are known with regard to the packing of the helices and consequently their relative orientations. Aspects of CytR activity are unique among repressors; we identify here structural properties that are also distinct and that might underlie the different functional properties.
机译:胞苷阻遏物(CytR)是具有独特功能特征的细菌阻遏物LacR家族的成员。大肠杆菌CytR调节子包含9个操纵子,回文操纵子的序列和最重要的是识别半位点之间的间隔都不同。这表明蛋白折叠将与DNA结合偶联的可能性很高,这是一种机制,可以适应CytR靶向的多种不同操纵基因结构。这种偶联是序列特异性DNA结合蛋白(包括LacR家族阻遏物)的共同特征。但是,迄今为止,在三螺旋DNA结合域(DBD)中,DNA结合后并没有明显的结构重排。我们使用核磁共振(NMR)光谱来表征溶液中游离的CytR DBD,并确定与尿苷磷酸化酶(udp)操纵子的一个DNAhalf位点特异性结合的CytR DBD单体的高分辨率结构。我们发现,游离DBD包含多个不同的构象,每个残基最多具有四组NMR峰。这种结构异质性以前在LacR家族中是未知的。这些稳定的结构合并为单个更稳定的udp结合形式,其特征是包含标准螺旋-转-螺旋基序的三螺旋束。但是,此结构不同于所有其他LacR家族成员,这些成员的螺旋结构及其相应的相对方向在结构上都是已知的。 CytR活性的方面在阻遏物中是独特的。我们在这里确定的结构特性也很独特,可能是不同功能特性的基础。

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