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A comprehensive analysis of structural and sequence conservation in the TetR family transcriptional regulators.

机译:TetR家族转录调节子中结构和序列保守性的全面分析。

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The tetracycline repressor family transcriptional regulators (TFRs) are homodimeric DNA-binding proteins that generally act as transcriptional repressors. Their DNA-binding activity is allosterically inactivated by the binding of small-molecule ligands. TFRs constitute the third most frequently occurring transcriptional regulator family found in bacteria with more than 10,000 representatives in the nonredundant protein database. In addition, more than 100 unique TFR structures have been solved by X-ray crystallography. In this study, we have used computational and experimental approaches to reveal the variations and conservation present within TFRs. Although TFR structures are very diverse, we were able to identify a conserved central triangle in their ligand-binding domains that forms the foundation of the structure and the framework for the ligand-binding cavity. While the sequences of DNA-binding domains of TFRs are highly conserved across the whole family, the sequences of their ligand-binding domains are so diverse that pairwise sequence similarity is often undetectable. Nevertheless, by analyzing subfamilies of TFRs, we were able to identify distinct regions of conservation in ligand-binding domains that may be important for allostery. To aid in large-scale analyses of TFR function, we have developed a simple and reliable computational approach to predict TFR operator sequences, a temperature melt-based assay to measure DNA binding, and a generic ligand-binding assay that will likely be applicable to most TFRs. Finally, our analysis of TFR structures highlights their flexibility and provides insight into a conserved allosteric mechanism for this family.
机译:四环素阻遏物家族的转录调节因子(TFR)是同二聚体DNA结合蛋白,通常充当转录阻遏物。它们的DNA结合活性被小分子配体的结合变构激活。 TFR构成细菌中发现的第三种最常出现的转录调节子家族,在非冗余蛋白质数据库中有10,000多个代表。此外,X射线晶体学已解决了100多个独特的TFR结构。在这项研究中,我们使用了计算和实验方法来揭示TFR中存在的变异和保守性。尽管TFR结构非常多样,但我们能够在其配体结合域中鉴定出一个保守的中心三角形,该三角形形成了配体结合腔的结构和框架的基础。尽管TFR的DNA结合结构域的序列在整个家族中是高度保守的,但它们的配体结合结构域的序列却是如此多样化,以至于常常无法检测到成对的序列相似性。但是,通过分析TFR的亚家族,我们能够在配体结合域中鉴定出可能对变构很重要的不同保守区域。为了帮助进行TFR功能的大规模分析,我们开发了一种简单而可靠的计算方法来预测TFR操纵子序列,基于温度融化的测定法来测量DNA结合以及一种通用的配体结合测定法(可能适用于大多数TFR。最后,我们对TFR结构的分析突出了它们的灵活性,并提供了对该家族保守的变构机制的见解。

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