State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, College of Life Science and Technology, Guangxi Key Laboratory for Sugarcane Biology, Guangxi University, Nanning 530004, China.
Protein Chemistry and Proteomics Facility, Protein Research Technology Center, Tsinghua University, Beijing 100084, China.
Nucleic Acids Res. 2021 Jun 21;49(11):6511-6528. doi: 10.1093/nar/gkab432.
The zinc uptake regulator (Zur) is a member of the Fur (ferric uptake regulator) family transcriptional regulators that plays important roles in zinc homeostasis and virulence of bacteria. Upon zinc perception, Zur binds to the promoters of zinc responsive genes and controls their transcription. However, the mechanism underlying zinc-mediated Zur activation remains unclear. Here we report a 2.2-Å crystal structure of apo Zur from the phytopathogen Xanthomonas campestris pv. campestris (XcZur), which reveals the molecular mechanism that XcZur exists in a closed inactive state before regulatory zinc binding. Subsequently, we present a 1.9-Å crystal structure of holo XcZur, which, by contrast, adopts an open state that has enough capacity to bind DNA. Structural comparison and hydrogen deuterium exchange mass spectrometry (HDX-MS) analyses uncover that binding of a zinc atom in the regulatory site, formed by the hinge region, the dimerization domain and the DNA binding domain, drives a closed-to-open conformational change that is essential for XcZur activation. Moreover, key residues responsible for DNA recognition are identified by site-directed mutagenesis. This work provides important insights into zinc-induced XcZur activation and valuable discussions on the mechanism of DNA recognition.
锌摄取调节蛋白(Zur)是 Fur(铁摄取调节蛋白)家族转录调节因子的一员,在细菌的锌稳态和毒力中发挥重要作用。在锌感应后,Zur 结合到锌反应基因的启动子上,并控制它们的转录。然而,锌介导 Zur 激活的机制尚不清楚。在这里,我们报告了来自植物病原菌黄单胞菌 pv. 菜斑病(XcZur)的 apo Zur 的 2.2Å 晶体结构,该结构揭示了 XcZur 在调节锌结合之前以封闭的非活性状态存在的分子机制。随后,我们呈现了 holo XcZur 的 1.9Å 晶体结构,相比之下,它采用了开放状态,具有足够的能力结合 DNA。结构比较和氢氘交换质谱(HDX-MS)分析揭示了在调节位点形成的锌原子的结合,由铰链区、二聚化结构域和 DNA 结合结构域组成,驱动了封闭到开放的构象变化,这对于 XcZur 的激活是必不可少的。此外,通过定点突变鉴定了负责 DNA 识别的关键残基。这项工作为锌诱导的 XcZur 激活提供了重要的见解,并对 DNA 识别机制进行了有价值的讨论。