Crystal structures of NAD(P)H nitroreductases from Klebsiella pneumoniae

IF 1.1 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS
Abhishek D. Kancherla, Lijun Liu, Logan Tillery, Roger Shek, Justin K. Craig, Alexandra J. Machen, Steve Seibold, Kevin P. Battaile, Selma Fradi, Lynn K. Barrett, Sandhya Subramanian, Peter Myler, Wesley C. Van Voorhis, Scott Lovell
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引用次数: 0

Abstract

Klebsiella pneumoniae (Kp) is an infectious disease pathogen that poses a significant global health threat due to its potential to cause severe infections and its tendency to exhibit multidrug resistance. Understanding the enzymatic mechanisms of the oxygen-insensitive nitroreductases (Kp-NRs) from Kp is crucial for the development of effective nitrofuran drugs, such as nitrofurantoin, that can be activated as antibiotics. In this paper, three crystal structures of two Kp-NRs (PDB entries 7tmf/7tmg and 8dor) are presented, and an analysis of their crystal structures and their flavin mononucleotide (FMN)-binding mode is provided. The structures with PDB codes 7tmf (Kp-NR1a), 7tmg (Kp-NR1b) and 8dor (Kp-NR2) were determined at resolutions of 1.97, 1.90 and 1.35 Å, respectively. The Kp-NR1a and Kp-NR1b structures adopt an αβ fold, in which four-stranded antiparallel β-sheets are surrounded by five helices. With domain swapping, the β-sheet was expanded with a β-strand from the other molecule of the dimer. The difference between the structures lies in the loop spanning Leu173–Ala185: in Kp-NR1a the loop is disordered, whereas the loop adopts multiple conformations in Kp-NR1b. The FMN interactions within Kp-NR1/NR2 involve hydrogen-bond and π-stacking interactions. Kp-NR2 contains four-stranded antiparallel β-sheets surrounded by eight helices with two short helices and one β-sheet. Structural and sequence alignments show that Kp-NR1a/b and Kp-NR2 are homologs of the Escherichia coli oxygen-insensitive NRs YdjA and NfnB and of Enterobacter cloacae NR, respectively. By homology inference from E. coli, Kp-NR1a/b and Kp-NR2 may detoxify polynitroaromatic compounds and Kp-NR2 may activate nitrofuran drugs to cause bactericidal activity through a ping-pong bi-bi mechanism, respectively.

Abstract Image

肺炎克雷伯氏菌中 NAD(P)H 硝基还原酶的晶体结构。
肺炎克雷伯氏菌(Kp)是一种传染性疾病病原体,由于其可能导致严重感染并具有表现出多药耐药性的倾向,对全球健康构成了重大威胁。了解 Kp 中对氧不敏感的硝基还原酶(Kp-NRs)的酶学机制对于开发有效的硝基呋喃类药物(如硝基呋喃妥因)至关重要,这些药物可以作为抗生素激活。本文展示了两个 Kp-NRs 的三个晶体结构(PDB 条目 7tmf/7tmg 和 8dor),并对它们的晶体结构及其黄素单核苷酸(FMN)结合模式进行了分析。PDB 代码为 7tmf(Kp-NR1a)、7tmg(Kp-NR1b)和 8dor(Kp-NR2)的晶体结构的分辨率分别为 1.97、1.90 和 1.35 Å。Kp-NR1a和Kp-NR1b结构采用αβ折叠,其中四链反平行β片被五个螺旋包围。通过结构域交换,二聚体中另一个分子的 β 链扩展了 β 片层。这两种结构的区别在于跨越 Leu173-Ala185 的环路:在 Kp-NR1a 中,环路是无序的,而在 Kp-NR1b 中,环路采用了多种构象。Kp-NR1/NR2 中的 FMN 相互作用涉及氢键和 π-stacking 相互作用。Kp-NR2 包含四链反平行 β 片,由八个螺旋环绕,其中有两个短螺旋和一个 β 片。结构和序列比对结果表明,Kp-NR1a/b 和 Kp-NR2 分别与大肠杆菌氧不敏感 NR YdjA 和 NfnB 以及泄殖腔肠杆菌 NR 同源。根据大肠杆菌的同源性推断,Kp-NR1a/b和Kp-NR2可能分别对多硝基芳香族化合物进行解毒,以及Kp-NR2可能通过乒乓双生物机制激活硝基呋喃类药物,从而产生杀菌活性。
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来源期刊
Acta crystallographica. Section F, Structural biology communications
Acta crystallographica. Section F, Structural biology communications BIOCHEMICAL RESEARCH METHODSBIOCHEMISTRY &-BIOCHEMISTRY & MOLECULAR BIOLOGY
CiteScore
1.90
自引率
0.00%
发文量
95
期刊介绍: Acta Crystallographica Section F is a rapid structural biology communications journal. Articles on any aspect of structural biology, including structures determined using high-throughput methods or from iterative studies such as those used in the pharmaceutical industry, are welcomed by the journal. The journal offers the option of open access, and all communications benefit from unlimited free use of colour illustrations and no page charges. Authors are encouraged to submit multimedia content for publication with their articles. Acta Cryst. F has a dedicated online tool called publBio that is designed to make the preparation and submission of articles easier for authors.
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