标题: 在药物诱导下分离鉴定白色念珠菌之调控因子
Isolation and identification of trans-regulatory factors of CDR1 in Candida albicans
作者: 纪锦升
Chin-Sheng Chi
杨昀良
Yun-Liang Yang
生物科技学系
关键字: 白色念珠菌;抗药基因;Candida albicans;drug
公开日期: 2003
摘要: 白色念珠菌的重要性不只在它们感染的严重性;而且在长期或预防性治疗的病人身上,容易发展出对azole等药物有抗性的菌株。很多的生化研究因此着重在各式各样不同的抗azole类的药物机制。其中最常见的抗药机制则是药物排出帮浦 (drug efflux pumps) 基因 (例如CDR1 或 CDR2) 的表现量增加。
近几年来,很多研究致力于了解白色念珠菌的多重药物转运基因(multi-drug transporter genes) CDR1 的调控机制。然而,对于CDR1 的trans调控因子仍然所知不多。本研究因此着重在分离鉴定CDR1的trans调控因子。利用Ym990348 CDR1的启动子与lacZ的转译区 (open reading frame; ORF) 建构成重组基因来当作筛选系统,且在药物诱导下进行筛选。共有四个ORF被筛选分离出来,此四个ORF分别被命名为REP3, REP4, REP5, 和 REP6。其中两个 (REP3, REP6) ORF 具有nucleic acid-binding 结构—C2H2 type 指状区域功能基 (zinc finger domain),因此它们可能扮演转译调控子 (transcription regulator) 的角色。最后根据药物敏感性测试 (Etest) 的结果,发现REP3 同型缺陷的突变株 (homozygous mutant) 对azole类药物的感受性有提高的现象。根据以上结果推论,REP3基因参与调控CDR1基因的表现,并且影响白色念珠菌对药物的感受性。
Candida albicans derive their importance not only from the severity of their infections but also for their ability to develop resistance against antifungals, such as azoles, in patients undergoing long-term or prophylactic treatment. Extensive biochemical studies have highlighted a significant diversity in the mechanisms conferring resistance to azoles. Up-regulation of drug extrusion pump-encoding genes belonging to the ABC (ATP binding cassette, e.g. CDR1 and CDR2) superfamily represents one of the most prevalent mechanisms of Candida drug resistance.
In recent years, much effort has been devoted to understand the regulatory mechanisms of multi-drug transporter genes, such as CDR1, in C. albicans. Nonetheless, little is known about the trans-regulatory factors of CDR1. The study here focuses on isolation and identification of the trans-acting regulatory factors of CDR1. Using Ym00348 CDR1 promoter in-frame fusion with lacZ gene as the screening system, under the presence of drugs, four candidate open reading frames (ORFs) have been isolated. These four ORFs were named REP3, REP4, REP5, and REP6. Two (REP3 and REP6) of them have the C2H2 type zinc finger domain, which is one of the major nucleic acid-binding structures, indicating their potential roles as transcription regulators. According to the results of the Etest, rep3/rep3 homozygous mutant seems to be more susceptible to azoles. It shows that REP3 may have involved in the CDR1 expression and may also affect the drug susceptibility of C. albicans.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009128525
http://hdl.handle.net/11536/56046
显示于类别:Thesis


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  1. 852501.pdf
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  3. 852503.pdf
  4. 852504.pdf
  5. 852505.pdf
  6. 852506.pdf
  7. 852507.pdf
  8. 852508.pdf
  9. 852509.pdf
  10. 852510.pdf
  11. 852511.pdf

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