首页> 美国卫生研究院文献>other >Transcriptomics Indicates Active and Passive Metronidazole Resistance Mechanisms in Three Seminal Giardia Lines
【2h】

Transcriptomics Indicates Active and Passive Metronidazole Resistance Mechanisms in Three Seminal Giardia Lines

机译:转录组学表明三种精油贾第虫系的主动和被动甲硝唑耐药机制。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Giardia duodenalis is an intestinal parasite that causes 200–300 million episodes of diarrhoea annually. Metronidazole (Mtz) is a front-line anti-giardial, but treatment failure is common and clinical resistance has been demonstrated. Mtz is thought to be activated within the parasite by oxidoreductase enzymes, and to kill by causing oxidative damage. In G. duodenalis, Mtz resistance involves active and passive mechanisms. Relatively low activity of iron-sulfur binding proteins, namely pyruvate:ferredoxin oxidoreductase (PFOR), ferredoxins, and nitroreductase-1, enable resistant cells to passively avoid Mtz activation. Additionally, low expression of oxygen-detoxification enzymes can allow passive (non-enzymatic) Mtz detoxification via futile redox cycling. In contrast, active resistance mechanisms include complete enzymatic detoxification of the pro-drug by nitroreductase-2 and enhanced repair of oxidized biomolecules via thioredoxin-dependent antioxidant enzymes. Molecular resistance mechanisms may be largely founded on reversible transcriptional changes, as some resistant lines revert to drug sensitivity during drug-free culture in vitro, or passage through the life cycle. To comprehensively characterize these changes, we undertook strand-specific RNA sequencing of three laboratory-derived Mtz-resistant lines, 106-2ID10, 713-M3, and WB-M3, and compared transcription relative to their susceptible parents. Common up-regulated genes encoded variant-specific surface proteins (VSPs), a high cysteine membrane protein, calcium and zinc channels, a Mad-2 cell cycle regulator and a putative fatty acid α-oxidase. Down-regulated genes included nitroreductase-1, putative chromate and quinone reductases, and numerous genes that act proximal to PFOR. Transcriptional changes in 106-2ID10 diverged from those in 713-r and WB-r (r ≤ 0.2), which were more similar to each other (r = 0.47). In 106-2ID10, a nonsense mutation in nitroreductase-1 transcripts could enhance passive resistance whereas increased transcription of nitroreductase-2, and a MATE transmembrane pump system, suggest active drug detoxification and efflux, respectively. By contrast, transcriptional changes in 713-M3 and WB-M3 indicated a higher oxidative stress load, attributed to Mtz- and oxygen-derived radicals, respectively. Quantitative comparisons of orthologous gene transcription between Mtz-resistant G. duodenalis and Trichomonas vaginalis, a closely related parasite, revealed changes in transcripts encoding peroxidases, heat shock proteins, and FMN-binding oxidoreductases, as prominent correlates of resistance. This work provides deep insight into Mtz-resistant G. duodenalis, and illuminates resistance-associated features across parasitic species.
机译:贾第鞭毛虫是一种肠道寄生虫,每年引起200–3亿腹泻发作。甲硝唑(Mtz)是一线抗疟疾药,但治疗失败很常见,并且已证明具有临床抵抗力。据认为,Mtz通过氧化还原酶在寄生虫内被激活,并通过引起氧化损伤而杀死。在十二指肠中,Mtz抵抗涉及主动和被动机制。铁-硫结合蛋白,即丙酮酸:铁氧还蛋白氧化还原酶(PFOR),铁氧还蛋白和硝酸还原酶-1的活性相对较低,可使抗性细胞被动避免Mtz活化。此外,氧解毒酶的低表达可以通过无效的氧化还原循环进行被动的(非酶促的)Mtz解毒。相反,主动抗药性机制包括通过硝基还原酶2对前药进行完全的酶解毒,以及通过硫氧还蛋白依赖性抗氧化酶增强对氧化生物分子的修复。分子抗药性机制可能主要建立在可逆的转录变化上,因为一些抗药性系在体外无毒培养或生命周期中恢复了对药物的敏感性。为了全面表征这些变化,我们对三个实验室衍生的Mtz抗性品系106-2ID10、713-M3和WB-M3进行了链特异性RNA测序,并比较了其易感亲本的转录。常见的上调基因编码变异特异性表面蛋白(VSP),高半胱氨酸膜蛋白,钙和锌通道,Mad-2细胞周期调节剂和推定的脂肪酸α-氧化酶。下调的基因包括硝基还原酶-1,推定的铬酸盐和醌还原酶,以及许多在PFOR附近起作用的基因。 106-2ID10中的转录变化与713-r和WB-r中的变化(r≤0.2)不同,彼此更相似(r = 0.47)。在106-2ID10中,硝化酶-1转录物的无意义突变可以增强被动抗性,而硝化酶-2和MATE跨膜泵系统的转录增加,分别表明活性药物排毒和外排。相反,713-M3和WB-M3中的转录变化表明较高的氧化应激负荷,分别归因于Mtz和氧衍生的自由基。耐Mtz的十二指肠十二指肠和阴道毛滴虫之间的直系同源基因转录的定量比较显示,编码过氧化物酶,热休克蛋白和FMN结合氧化还原酶的转录本发生变化,这是耐药性的重要相关因素。这项工作提供了对耐Mtz的十二指肠十二指肠的深入了解,并阐明了寄生虫中与电阻相关的特征。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号