Conformational ensembles in Klebsiella pneumoniae FimH impact uropathogenesis

IF 9.4 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences of the United States of America Pub Date : 2024-09-17 DOI:10.1073/pnas.2409655121
Edward D. B. Lopatto, Jerome S. Pinkner, Denise A. Sanick, Robert F. Potter, Lily X. Liu, Jesús Bazán Villicaña, Kevin O. Tamadonfar, Yijun Ye, Maxwell I. Zimmerman, Nathaniel C. Gualberto, Karen W. Dodson, James W. Janetka, David A. Hunstad, Scott J. Hultgren
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Abstract

Klebsiella pneumoniae is an important pathogen causing difficult-to-treat urinary tract infections (UTIs). Over 1.5 million women per year suffer from recurrent UTI, reducing quality of life and causing substantial morbidity and mortality, especially in the hospital setting. Uropathogenic E. coli (UPEC) is the most prevalent cause of UTI. Like UPEC, K. pneumoniae relies on type 1 pili, tipped with the mannose-binding adhesin FimH, to cause cystitis. However, K. pneumoniae FimH is a poor binder of mannose, despite a mannose-binding pocket identical to UPEC FimH. FimH is composed of two domains that are in an equilibrium between tense (low-affinity) and relaxed (high-affinity) conformations. Substantial interdomain interactions in the tense conformation yield a low-affinity, deformed mannose-binding pocket, while domain–domain interactions are broken in the relaxed state, resulting in a high-affinity binding pocket. Using crystallography, we identified the structural basis by which domain–domain interactions direct the conformational equilibrium of K. pneumoniae FimH, which is strongly shifted toward the low-affinity tense state. Removal of the pilin domain restores mannose binding to the lectin domain, thus showing that poor mannose binding by K. pneumoniae FimH is not an inherent feature of the mannose-binding pocket. Phylogenetic analyses of K. pneumoniae genomes found that FimH sequences are highly conserved. However, we surveyed a collection of K. pneumoniae isolates from patients with long-term indwelling catheters and identified isolates that possessed relaxed higher-binding FimH variants, which increased K. pneumoniae fitness in bladder infection models, suggesting that long-term residence within the urinary tract may select for higher-binding FimH variants.
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肺炎克雷伯菌 FimH 的构象组合对尿路发病机制的影响
肺炎克雷伯菌是导致难以治疗的尿路感染(UTI)的重要病原体。每年有 150 多万名妇女反复患上尿路感染,降低了生活质量,并导致大量的发病率和死亡率,尤其是在医院环境中。尿路致病性大肠杆菌(UPEC)是UTI 的最常见病因。与 UPEC 一样,肺炎双球菌也是依靠带有甘露糖结合粘附蛋白 FimH 的 1 型纤毛来引起膀胱炎。然而,尽管肺炎双球菌的甘露糖结合袋与 UPEC FimH 相同,但肺炎双球菌 FimH 的甘露糖结合能力很差。FimH 由两个结构域组成,这两个结构域处于紧张(低亲和力)和松弛(高亲和力)构象之间的平衡状态。在紧张构象中,大量的结构域间相互作用产生了一个低亲和力的变形甘露糖结合口袋,而在松弛状态下,结构域间的相互作用被打破,从而产生了一个高亲和力的结合口袋。通过晶体学研究,我们确定了结构基础,通过这种结构基础,结构域-结构域相互作用引导肺炎双球菌 FimH 的构象平衡,使其向低亲和力的紧张状态强烈转变。去除凝集素结构域可恢复甘露糖与凝集素结构域的结合,从而表明肺炎克雷伯菌 FimH 与甘露糖结合力差并不是甘露糖结合口袋的固有特征。肺炎克雷伯菌基因组的系统进化分析发现,FimH 的序列高度保守。然而,我们调查了一组来自长期留置导尿管患者的肺炎克雷伯菌分离物,发现分离物具有松弛的高结合力FimH变体,这增加了肺炎克雷伯菌在膀胱感染模型中的适应性,表明长期居住在泌尿道中可能会选择高结合力的FimH变体。
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
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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