Wang Mengying, Zhang Dandan, Tian Xiu, Tong Jiangyang, Yao Yizhou, Wang Mingshu, Zhu Dekang, Jia Renyong, Chen Shun, Zhao Xinxin, Zhang Shaqiu, Huang Juan, Ou Xumin, Tian Bin, Sun Di, He Yu, Wu Zhen, Ouyang Songying, Liu Mafeng, Cheng Anchun
Engineering Research Center of Southwest Animal Disease Prevention and Control Technology, Ministry of Education of the People's Republic of China, Chengdu, 611130, China.
Key Laboratory of Animal Disease and Human Health of Sichuan Province, Chengdu, 611130, China.
Adv Sci (Weinh). 2025 Apr;12(13):e2412202. doi: 10.1002/advs.202412202. Epub 2025 Jan 30.
Several bacterial pathogens employ haemophores to scavenge haem from host haemoprotein to obtain an iron source. However, no homologues of well-characterized haemophores are found in Riemerella anatipestifer, a bacterium belonging to the order Flavobacteriales that encodes haem uptake systems. Herein, a unique haemophore RhuH is characterized in this bacterium. R. anatipestifer used RhuH to grow when duck hemoglobin serves as the sole iron resource. RhuH is secreted as a component of outer membrane vesicles. Recombinant RhuH exhibited a high binding affinity for haem (K of 3.44 × 10 m) and can extract haem from duck hemoglobin. X-ray crystallography elucidated the 3D structure of RhuH at 2.85 Å resolution, showing a dimeric conformation with each monomer exhibiting a unique structure. Structure modeling of RhuH-haem, coupled with mutagenesis, haemin utilization, and binding affinity assays, show that haem is captured in the β-barrel-like region, displaying the classic iron coordination. The RhuH homologues are predominantly distributed in Weeksellaceae and Flavobacteriaceae. Finally, the homologues of RhuH in Riemerella columbina, Flavobacterium columnare, and Flavobacterium soli are used as a proof of concept, demonstrating that these homologues exhibit conserved structures and functions.
几种细菌病原体利用血色素载体从宿主血红蛋白中 scavenge 血红素以获取铁源。然而,在属于黄杆菌目的编码血红素摄取系统的鸭疫里默氏菌中未发现特征明确的血色素载体的同源物。在此,一种独特的血色素载体RhuH在这种细菌中得到了表征。当鸭血红蛋白作为唯一铁源时,鸭疫里默氏菌利用RhuH生长。RhuH作为外膜囊泡的一个组分被分泌。重组RhuH对血红素表现出高结合亲和力(K为3.44×10 m),并且可以从鸭血红蛋白中提取血红素。X射线晶体学以2.85 Å的分辨率阐明了RhuH的三维结构,显示出二聚体构象,每个单体具有独特的结构。RhuH-血红素的结构建模,结合诱变、血红素利用和结合亲和力测定,表明血红素在β-桶状区域被捕获,显示出经典的铁配位。RhuH同源物主要分布在韦克斯氏菌科和黄杆菌科。最后,鸽里默氏菌、柱状黄杆菌和土壤黄杆菌中的RhuH同源物被用作概念验证,证明这些同源物具有保守的结构和功能。 (注:原文中“scavenge”未准确翻译,推测可能是“夺取”等意思;“K of 3.44 × 10 m”表述有误,可能影响准确理解)