ChIP-seq and structural analyses delineating the regulatory mechanism of master regulator EsrB in Edwardsiella piscicida.

IF 3.9 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Applied and Environmental Microbiology Pub Date : 2024-12-18 Epub Date: 2024-11-15 DOI:10.1128/aem.01805-24
Boya Zhang, Yi Zhang, Jingjing Liu, David Reverter, Qiyao Wang, Sang Ho Choi, Bing Liu, Shuai Shao
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引用次数: 0

Abstract

As a response regulator of the EsrA-EsrB two-component system, EsrB is conserved in Hafniaceae and plays a crucial role in virulence and pathogenicity. EsrB possesses DNA binding abilities, enabling it to regulate the transcription of virulence genes to confront different stresses and achieve systematic infections. Here, ChIP-seq analysis of EsrB in Dulbecco's Modified Eagle's Medium (DMEM) (mimicking in vivo environments) revealed that EsrB preferred to bind to virulence-associated promoters with a distinct 7'-4-7'' pseudopalindromic DNA motif and interact with metabolic-related promoters with a high AT DNA motif. The crystal structure of the C-terminal of EsrB (EsrBC) was solved at 2.20-Å resolution. Specifically, Lys181 enabled the DNA-binding affinity of EsrB and promoted the in vitro and in vivo pathogenicity of Edwardsiella piscicida. Moreover, EsrB directly regulated the expression of genes associated with basal metabolism, including iron and tricarboxylic acid (TCA) cycles. Furthermore, EsrB enhanced iron transport capability and the enzyme activity of succinate dehydrogenase and pyruvate dehydrogenase in DMEM. Collectively, our structural and ChIP-seq analysis provides valuable insights into the DNA binding mechanism of EsrB which will facilitate our understanding of EsrB coordinating virulence and basal metabolism gene expression.

Importance: As a crucial virulence regulator, EsrB possesses a LuxR-like superfamily domain at the C-terminal, which is conserved within the canonical NarL family regulators. Due to its critically important role in virulence and pathogenicity in fish hosts, the DNA binding ability has been believed to allow EsrB to regulate genes associated with the invasion process of host cells and basal metabolism in response to environmental stimuli. The lack of EsrB's crystal structure has been a major obstacle in understanding the molecular mechanisms of EsrB-DNA interaction which choreographs EsrB-mediated pathogenic behavior. Here, we conducted ChIP-seq and solved the crystal structure of the C-terminal of EsrB (EsrBC) at 2.20-Å resolution, which revealed that EsrB preferred to bind to virulence-associated promoters with a distinct 7'-4-7' pseudopalindromic DNA motif and interacted with metabolic-related promoters with a high AT DNA motif in Dulbecco's Modified Eagle's Medium (DMEM) (mimicking in vivo environments). Our results facilitate a detailed understanding of EsrB's regulatory role in Edwardsiella piscicida pathogenesis and expand our knowledge of virulence regulators in the family Hafniaceae.

ChIP-seq 和结构分析揭示了鱼腥藻中主调控因子 EsrB 的调控机制。
作为 EsrA-EsrB 双组分系统的反应调节因子,EsrB 在姬松茸科植物中是保守的,在毒力和致病性方面起着至关重要的作用。EsrB 具有 DNA 结合能力,能够调控毒力基因的转录,以应对不同的胁迫并实现系统感染。研究人员在杜尔贝科改良鹰培养基(DMEM)(模拟体内环境)中对EsrB进行了ChIP-seq分析,发现EsrB更倾向于与具有明显7'-4-7''伪opalindromic DNA motif的毒力相关启动子结合,并与具有高AT DNA motif的代谢相关启动子相互作用。研究人员以 2.20 Å 的分辨率解析了 EsrB(EsrBC)C 端的晶体结构。具体而言,Lys181使EsrB的DNA结合亲和力增强,并促进了Edwardsiella piscicida的体外和体内致病性。此外,EsrB直接调节与基础代谢相关的基因的表达,包括铁和三羧酸(TCA)循环。此外,EsrB 还增强了铁的转运能力以及 DMEM 中琥珀酸脱氢酶和丙酮酸脱氢酶的酶活性。总之,我们的结构和 ChIP-seq 分析为 EsrB 的 DNA 结合机制提供了有价值的见解,有助于我们了解 EsrB 协调毒力和基础代谢基因表达的机制:作为一种重要的毒力调控因子,EsrB的C端具有一个类似于LuxR的超家族结构域,该结构域在典型的NarL家族调控因子中是保守的。由于 EsrB 在鱼类宿主的毒力和致病性中扮演着极其重要的角色,其 DNA 结合能力被认为使 EsrB 能够调控与宿主细胞入侵过程和基础代谢有关的基因,以应对环境刺激。EsrB晶体结构的缺失一直是理解EsrB-DNA相互作用分子机制的主要障碍,而这种相互作用编排了EsrB介导的致病行为。在这里,我们进行了ChIP-seq分析,并以2.20埃的分辨率解析了EsrB(EsrBC)的C端晶体结构,结果发现EsrB更倾向于与具有明显7'-4-7'假髓鞘DNA基团的毒力相关启动子结合,并与在杜尔贝科改良老鹰培养基(DMEM)(模拟体内环境)中具有高AT DNA基团的代谢相关启动子相互作用。我们的研究结果有助于详细了解 EsrB 在鱼腥埃德维氏菌致病过程中的调控作用,并拓展了我们对哈夫纳氏菌科毒力调控因子的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied and Environmental Microbiology
Applied and Environmental Microbiology 生物-生物工程与应用微生物
CiteScore
7.70
自引率
2.30%
发文量
730
审稿时长
1.9 months
期刊介绍: Applied and Environmental Microbiology (AEM) publishes papers that make significant contributions to (a) applied microbiology, including biotechnology, protein engineering, bioremediation, and food microbiology, (b) microbial ecology, including environmental, organismic, and genomic microbiology, and (c) interdisciplinary microbiology, including invertebrate microbiology, plant microbiology, aquatic microbiology, and geomicrobiology.
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