Department of Biochemistry, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.
Department of Biochemistry, University of Nebraska-Lincoln, Lincoln, Nebraska, USA; Redox Biology Center, University of Nebraska-Lincoln, Lincoln, Nebraska, USA; Nebraska Center for Integrated Biomolecular Communication, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.
J Biol Chem. 2023 Jun;299(6):104777. doi: 10.1016/j.jbc.2023.104777. Epub 2023 May 2.
Mycobacterium tuberculosis (Mtb) WhiB3 is an iron-sulfur cluster-containing transcription factor belonging to a subclass of the WhiB-Like (Wbl) family that is widely distributed in the phylum Actinobacteria. WhiB3 plays a crucial role in the survival and pathogenesis of Mtb. It binds to the conserved region 4 of the principal sigma factor (σ) in the RNA polymerase holoenzyme to regulate gene expression like other known Wbl proteins in Mtb. However, the structural basis of how WhiB3 coordinates with σ to bind DNA and regulate transcription is unclear. Here we determined crystal structures of the WhiB3:σ complex without and with DNA at 1.5 Å and 2.45 Å, respectively, to elucidate how WhiB3 interacts with DNA to regulate gene expression. These structures reveal that the WhiB3:σ complex shares a molecular interface similar to other structurally characterized Wbl proteins and also possesses a subclass-specific Arg-rich DNA-binding motif. We demonstrate that this newly defined Arg-rich motif is required for WhiB3 binding to DNA in vitro and transcriptional regulation in Mycobacterium smegmatis. Together, our study provides empirical evidence of how WhiB3 regulates gene expression in Mtb by partnering with σ and engaging with DNA via the subclass-specific structural motif, distinct from the modes of DNA interaction by WhiB1 and WhiB7.
结核分枝杆菌(Mtb)WhiB3 是一种含铁硫簇的转录因子,属于广泛分布于放线菌门的 WhiB 样(Wbl)家族的一个亚类。WhiB3 在 Mtb 的存活和发病机制中起着至关重要的作用。它与 RNA 聚合酶全酶中的主要σ因子(σ)的保守区域 4 结合,像 Mtb 中的其他已知 Wbl 蛋白一样调节基因表达。然而,WhiB3 如何与 σ 协调结合 DNA 并调节转录的结构基础尚不清楚。在这里,我们分别以 1.5Å 和 2.45Å 的分辨率确定了 WhiB3:σ 复合物无 DNA 和有 DNA 时的晶体结构,以阐明 WhiB3 如何与 DNA 相互作用以调节基因表达。这些结构表明,WhiB3:σ 复合物共享与其他结构上已确定的 Wbl 蛋白相似的分子界面,并且还具有亚类特异性的富含精氨酸的 DNA 结合基序。我们证明,这个新定义的富含精氨酸的基序对于 WhiB3 在体外与 DNA 结合和在耻垢分枝杆菌中的转录调节是必需的。总之,我们的研究提供了经验证据,表明 WhiB3 通过与 σ 合作并通过亚类特异性结构基序与 DNA 相互作用,调节 Mtb 中的基因表达,这与 WhiB1 和 WhiB7 的 DNA 相互作用模式不同。