hptA突变可能介导耐甲氧西林金黄色葡萄球菌临床分离株对磷霉素的耐药性。

IF 2.3 4区 医学 Q3 INFECTIOUS DISEASES Microbial drug resistance Pub Date : 2023-11-01 Epub Date: 2023-08-21 DOI:10.1089/mdr.2022.0173
Jue Wang, Xiaogang Xu, Xiaoyu Zhao, Su Xu, Minggui Wang
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引用次数: 0

摘要

磷霉素可以单独使用或联合使用来治疗耐甲氧西林金黄色葡萄球菌(MRSA)感染。然而,在耐甲氧西林金黄色葡萄球菌中已观察到磷霉素耐药性。在金黄色葡萄球菌中,磷霉素抗性是由磷霉素修饰酶FosB或靶酶MurA的突变介导的。编码磷霉素转运蛋白的染色体glpT和uhpT基因的突变也会导致磷霉素耐药性。三组分调节系统HptRSA介导金黄色葡萄球菌中uhpT和glpT的表达。本研究旨在探讨hptRSA突变在MRSA临床分离株磷霉素耐药性中的作用。我们发现hptRSA突变在我们医院分离的MRSA菌株中很常见。大多数突变是氨基酸取代,广泛分布于磷霉素敏感株和磷霉素抗性株中。然而,HptA截短突变仅在具有野生型uhpT和glpT基因的fosB阴性磷霉素抗性菌株中发现。实时定量PCR结果显示,在HptA截短株中,uhpT的转录水平降低了13.7-25.6倍。HptA截短株的磷霉素最低抑菌浓度(MIC)为64-128 μg/mL,而SA240为2 μg/mL。uhpT的低转录水平和MIC的高增加表明hptA突变可能导致MRSA对磷霉素的耐药性。我们在一个hptA截短的临床菌株(SA179)中补充了hptA,显示磷霉素耐药性逆转(从128到32 μg/mL)。然后我们在金黄色葡萄球菌纽曼中敲除hptA;磷霉素MIC由4升至64 μg/mL,提示HptA突变可能在磷霉素耐药性中起重要作用。
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hptA Mutation May Mediate Fosfomycin Resistance in Methicillin-Resistant Staphylococcus aureus Clinical Isolates.

Fosfomycin can be used alone or in combination to treat methicillin-resistant Staphylococcus aureus (MRSA) infection. However, fosfomycin resistance has been observed in MRSA. In S. aureus, fosfomycin resistance is mediated by the fosfomycin-modifying enzyme FosB, or mutations in the target enzyme MurA. Mutations in the chromosomal glpT and uhpT genes, which encode fosfomycin transporters, also result in fosfomycin resistance. The three-component regulatory system HptRSA mediates the expression of uhpT and glpT in S. aureus. This study aimed to investigate the role of hptRSA mutation in fosfomycin resistance in MRSA clinical isolates. We found that hptRSA mutations were common in MRSA strains isolated from our hospital. Most mutations were amino acid substitutions and widely distributed in fosfomycin-sensitive and fosfomycin-resistant strains. However, HptA-truncated mutations were only found in fosB-negative fosfomycin-resistant strains with wild-type uhpT and glpT genes. Quantitative real-time PCR results showed that the transcription level of uhpT decreased by 13.7-25.6-fold in the HptA-truncated strains. Concordantly, the fosfomycin minimum inhibitory concentration (MIC) of HptA-truncated strains was 64-128 μg/mL, while SA240 was 2 μg/mL. The low transcription level of uhpT and high increase in MIC suggest that hptA mutation may lead to fosfomycin resistance in MRSA. We complemented hptA in one of the HptA-truncated clinical strains (SA179), showing reversal of fosfomycin resistance (from 128 to 32 μg/mL). Then we knocked out hptA in S. aureus Newman; fosfomycin MIC increased from 4 to 64 μg/mL, suggesting that HptA mutation may play an important role in fosfomycin resistance.

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来源期刊
Microbial drug resistance
Microbial drug resistance 医学-传染病学
CiteScore
6.00
自引率
3.80%
发文量
118
审稿时长
6-12 weeks
期刊介绍: Microbial Drug Resistance (MDR) is an international, peer-reviewed journal that covers the global spread and threat of multi-drug resistant clones of major pathogens that are widely documented in hospitals and the scientific community. The Journal addresses the serious challenges of trying to decipher the molecular mechanisms of drug resistance. MDR provides a multidisciplinary forum for peer-reviewed original publications as well as topical reviews and special reports. MDR coverage includes: Molecular biology of resistance mechanisms Virulence genes and disease Molecular epidemiology Drug design Infection control.
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