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铜绿假单胞菌D-丙氨酸-D-丙氨酸连接酶同工型作为潜在抗生素靶点的比较功能和结构分析

Comparative functional and structural analysis of Pseudomonas aeruginosa d-alanine-d-alanine ligase isoforms as prospective antibiotic targets.

作者信息

Pederick Jordan L, Woolman Jessica C, Bruning John B

机构信息

Institute for Photonics and Advanced Sensing (IPAS), School of Biological Sciences, The University of Adelaide, SA, Australia.

School of Biological Sciences, The University of Adelaide, SA, Australia.

出版信息

FEBS J. 2023 Dec;290(23):5536-5553. doi: 10.1111/febs.16932. Epub 2023 Aug 28.

Abstract

Pseudomonas aeruginosa is a major human pathogen in the healthcare setting. The emergence of multi-drug-resistant and extensive drug-resistant P. aeruginosa is of great concern, and clearly indicates that new alternatives to current first-line antibiotics are required in the future. Inhibition of d-alanine-d-alanine production presents as a promising avenue as it is a key component in the essential process of cell wall biosynthesis. In P. aeruginosa, d-alanine-d-alanine production is facilitated by two isoforms, d-alanine-d-alanine ligase A (PaDdlA) and d-alanine-d-alanine ligase B (PaDdlA), but neither enzyme has been individually characterised to date. Here, we present the functional and structural characterisation of PaDdlA and PaDdlB, and assess their potential as antibiotic targets. This was achieved using a combination of in vitro enzyme-activity assays and X-ray crystallography. The former revealed that both isoforms effectively catalyse d-alanine-d-alanine production with near identical efficiency, and that this is effectively disrupted by the model d-alanine-d-alanine ligase inhibitor, d-cycloserine. Next, each isoform was co-crystallised with ATP and either d-alanine-d-alanine or d-cycloserine, allowing direct comparison of the key structural features. Both isoforms possess the same structural architecture and share a high level of conservation within the active site. Although residues forming the d-alanine pocket are completely conserved, the ATP-binding pocket possesses several amino acid substitutions resulting in a differing chemical environment around the ATP adenine base. Together, these findings support that the discovery of dual PaDdlA/PaDdlB competitive inhibitors is a viable approach for developing new antibiotics against P. aeruginosa.

摘要

铜绿假单胞菌是医疗机构中主要的人类病原体。多重耐药和广泛耐药的铜绿假单胞菌的出现令人高度关注,这清楚地表明未来需要当前一线抗生素的新替代品。抑制d-丙氨酸-d-丙氨酸的产生是一条很有前景的途径,因为它是细胞壁生物合成基本过程中的关键组成部分。在铜绿假单胞菌中,d-丙氨酸-d-丙氨酸的产生由两种同工型促进,即d-丙氨酸-d-丙氨酸连接酶A(PaDdlA)和d-丙氨酸-d-丙氨酸连接酶B(PaDdlB),但迄今为止,这两种酶都尚未单独进行过表征。在此,我们展示了PaDdlA和PaDdlB的功能和结构特征,并评估了它们作为抗生素靶点的潜力。这是通过结合体外酶活性测定和X射线晶体学实现的。前者表明这两种同工型都能以几乎相同的效率有效催化d-丙氨酸-d-丙氨酸的产生,并且这一过程会被典型的d-丙氨酸-d-丙氨酸连接酶抑制剂d-环丝氨酸有效破坏。接下来,每种同工型都与ATP以及d-丙氨酸-d-丙氨酸或d-环丝氨酸共结晶,从而能够直接比较关键的结构特征。两种同工型具有相同的结构架构,并且在活性位点内具有高度的保守性。虽然形成d-丙氨酸口袋的残基完全保守,但ATP结合口袋有几个氨基酸取代,导致ATP腺嘌呤碱基周围的化学环境不同。总之,这些发现支持发现双重PaDdlA/PaDdlB竞争性抑制剂是开发针对铜绿假单胞菌的新型抗生素的可行方法。

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