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NO 传感器 NsrR 及其相关的 Rrf2 型 [FeS]-转录因子识别 DNA 的结构决定因素。

Structural determinants of DNA recognition by the NO sensor NsrR and related Rrf2-type [FeS]-transcription factors.

机构信息

Univ. Grenoble Alpes, CEA, CNRS, Institut de Biologie Structurale, Metalloproteins Unit, F-38000, Grenoble, France.

Centre for Molecular and Structural Biochemistry, School of Chemistry, University of East Anglia, Norwich Research Park, Norwich, NR4 7TJ, UK.

出版信息

Commun Biol. 2022 Jul 30;5(1):769. doi: 10.1038/s42003-022-03745-7.

Abstract

Several transcription factors of the Rrf2 family use an iron-sulfur cluster to regulate DNA binding through effectors such as nitric oxide (NO), cellular redox status and iron levels. [4Fe-4S]-NsrR from Streptomyces coelicolor (ScNsrR) modulates expression of three different genes via reaction and complex formation with variable amounts of NO, which results in detoxification of this gas. Here, we report the crystal structure of ScNsrR complexed with an hmpA1 gene operator fragment and compare it with those previously reported for [2Fe-2S]-RsrR/rsrR and apo-IscR/hyA complexes. Important structural differences reside in the variation of the DNA minor and major groove widths. In addition, different DNA curvatures and different interactions with the protein sensors are observed. We also report studies of NsrR binding to four hmpA1 variants, which indicate that flexibility in the central region is not a key binding determinant. Our study explores the promotor binding specificities of three closely related transcriptional regulators.

摘要

Rrf2 家族的几个转录因子使用铁硫簇通过效应物(如一氧化氮(NO)、细胞氧化还原状态和铁水平)来调节 DNA 结合。来自链霉菌(ScNsrR)的[4Fe-4S]-NsrR 通过与不同量的 NO 反应和形成复合物来调节三个不同基因的表达,从而解毒这种气体。在这里,我们报告了 ScNsrR 与 hmpA1 基因操纵子片段复合物的晶体结构,并将其与先前报道的[2Fe-2S]-RsrR/rsrR 和 apo-IscR/hyA 复合物进行了比较。重要的结构差异在于 DNA 小沟和大沟宽度的变化。此外,还观察到不同的 DNA 曲率和与蛋白质传感器的不同相互作用。我们还报告了 NsrR 与四个 hmpA1 变体结合的研究,这表明中心区域的灵活性不是关键的结合决定因素。我们的研究探讨了三个密切相关的转录调节因子的启动子结合特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffc0/9338935/57c90b561acc/42003_2022_3745_Fig1_HTML.jpg

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