Department of Molecular Biology and Biotechnology, Tezpur University, Tezpur, India.
Department of Biotechnology, Koneru Lakshmaiah Education Foundation, Guntur, India.
Front Cell Infect Microbiol. 2023 Jun 16;13:1147544. doi: 10.3389/fcimb.2023.1147544. eCollection 2023.
, the causative agent of tuberculosis, has evolved over time into a multidrug resistance strain that poses a serious global pandemic health threat. The ability to survive and remain dormant within the host macrophage relies on multiple transcription factors contributing to virulence. To date, very limited structural insights from crystallographic and NMR studies are available for TFs and TF-DNA binding events. Understanding the role of DNA structure in TF binding is critical to deciphering MTB pathogenicity and has yet to be resolved at the genome scale. In this work, we analyzed the compositional and conformational preference of 21 mycobacterial TFs, evident at their DNA binding sites, in local and global scales. Results suggest that most TFs prefer binding to genomic regions characterized by unique DNA structural signatures, namely, high electrostatic potential, narrow minor grooves, high propeller twist, helical twist, intrinsic curvature, and DNA rigidity compared to the flanking sequences. Additionally, preference for specific trinucleotide motifs, with clear periodic signals of tetranucleotide motifs, are observed in the vicinity of the TF-DNA interactions. Altogether, our study reports nuanced DNA shape and structural preferences of 21 TFs.
结核分枝杆菌是结核病的病原体,随着时间的推移,已经进化成一种多药耐药菌株,对全球大流行的健康构成严重威胁。在宿主巨噬细胞中生存和休眠的能力依赖于多种转录因子,这些转录因子有助于毒力。迄今为止,晶体学和 NMR 研究提供的 TF 和 TF-DNA 结合事件的结构见解非常有限。了解 DNA 结构在 TF 结合中的作用对于破译 MTB 的致病性至关重要,但尚未在基因组范围内得到解决。在这项工作中,我们分析了 21 种分枝杆菌 TF 在其 DNA 结合位点上的组成和构象偏好性,从局部和全局尺度进行了分析。结果表明,大多数 TF 更喜欢与具有独特 DNA 结构特征的基因组区域结合,与侧翼序列相比,这些区域具有高静电势、狭窄的小沟、高推进器扭曲、螺旋扭曲、固有曲率和 DNA 刚性。此外,在 TF-DNA 相互作用附近观察到特定三核苷酸基序的偏好,以及四核苷酸基序的清晰周期性信号。总的来说,我们的研究报告了 21 种 TF 的细微 DNA 形状和结构偏好。