Chinese Academy of Sciences Key Laboratory of Pathogenic Microbiology and Immunology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, 100190, China.
Appl Microbiol Biotechnol. 2014 Mar;98(6):2609-16. doi: 10.1007/s00253-013-5425-5. Epub 2014 Jan 17.
Most screening approaches produce compounds that target survival genes and are likely to generate resistance over time. Simply having more drugs does not address the potential emergence of resistance caused by target mutation, drug efflux pumps over-expression, and so on. There is a great need to explore new strategies to treat fungal infections caused by drug-resistant pathogens. In this study, we found that azole-resistant Candida albicans with CaCDR1 and CaCDR2 over-expression is hypersensitive against amphotericin B (AmB) by our high throughput synergy screening (HTSS). In contrast, Δcdr1 and Δcdr2 knockout strains were resistant to AmB. Moreover, clinical isolates with increased expression of CaCDR1 and CaCDR2 demonstrated susceptibility to AmB, which can also synergize with the efflux pumps inducer fluphenazine (FPZ). Finally, the increased drug susceptibility to AmB in azole-resistant C. albicans with drug efflux pumps over-expression was consistent with the elevated expression of CaERG11 and its associated ergosterols in clinical isolates. Our data implies that the level of ergosterol contents determines the susceptibility to azoles and AmB in C. albicans. Deep understanding of the above mechanisms would offer new hope to treat drug-resistant C. albicans.
大多数筛选方法产生的化合物靶向生存基因,并且随着时间的推移很可能产生耐药性。仅仅拥有更多的药物并不能解决由于靶标突变、药物外排泵过表达等引起的耐药性的潜在出现。非常有必要探索新的策略来治疗耐药病原体引起的真菌感染。在本研究中,我们发现高内涵协同筛选(HTSS)发现过表达 CaCDR1 和 CaCDR2 的唑类耐药白色念珠菌对两性霉素 B(AmB)敏感。相比之下,Δcdr1 和 Δcdr2 敲除菌株对 AmB 具有抗性。此外,表达增加的 CaCDR1 和 CaCDR2 的临床分离株对 AmB 表现出敏感性,并且还可以与外排泵诱导剂氟奋乃静(FPZ)协同作用。最后,唑类耐药白色念珠菌中药物外排泵过表达导致 AmB 敏感性增加与临床分离株中 CaERG11 及其相关麦角固醇的表达升高一致。我们的数据表明麦角固醇含量的水平决定了白色念珠菌对唑类药物和两性霉素 B 的敏感性。深入了解上述机制将为治疗耐药性白色念珠菌提供新的希望。