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首页> 外文期刊>FEMS Yeast Research >Identification of a negative regulatory element which regulates basal transcription of a multidrug resistance gene CDR1 of Candida albicans
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Identification of a negative regulatory element which regulates basal transcription of a multidrug resistance gene CDR1 of Candida albicans

机译:负调控元件的鉴定,该负调控元件调节白色念珠菌的多药抗性基因CDR1的基础转录

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We have earlier shown that transcriptional activation of the Candida drug resistance gene, CDR1, is linked to various stresses wherein a proximal promoter (-345 bp from the transcription start point (TSP)) was found to be predominantly more responsive. In this study we have examined basal expression of the CDR1 proximal promoter by employing a Renilla luciferase reporter system. We observed that upon sequential deletion of the proximal promoter, there was modulation in basal reporter activity. The reporter activity was highest (2.3-fold) in NGY261 (-261 bp from TSP), and was reduced upon subsequent deletions. DNase I footprinting revealed four protected regions (W1, W2, W3 and W4) in the proximal promoter which could represent possible trans-acting factor binding sites and thus might be involved in CDR1 expression. Site-directed mutational analysis of three of these protected regions did not significantly affect the basal reporter activity, however, the mutation of W1 led to a considerable enhancement in reporter activity (similar to4-fold) and was designated a negative regulatory element (NRE). Mutation as well as deletion of the W I sequence in the native promoter (-1147 bp from TSP) and sequential deletion of the 5'-flanking region-harboring W1 (NRE) also resulted in enhanced promoter reporter activity. When the reporter activity of native (NPY1147) and NRE-mutated (NGYM1147) promoter integrants was monitored throughout the growth phase of Candida albicans, there was modulation in reporter activity in both integrants, but interestingly the level of basal reporter activity of the NRE-mutated promoter was always similar to3-fold higher than that of the native promoter. UV cross-linking and affinity purification confirmed that a purified similar to55-kDa nuclear protein specifically interacts with the NRE. Taken together, we have identified a NRE and purified its interactive protein, which may be involved in controlling basal expression of CDR1
机译:我们较早的研究表明,念珠菌抗药性基因CDR1的转录激活与多种应激相关,其中发现近端启动子(距转录起始点(TSP)-345 bp)更具响应性。在这项研究中,我们通过使用海肾荧光素酶报告系统检查了CDR1近端启动子的基础表达。我们观察到顺序删除近端启动子后,基础报道分子活性受到调节。在NGY261(从TSP到-261 bp)中,报告子活​​性最高(2.3倍),在随后的删除后降低。 DNase I足迹显示在近端启动子中有四个保护区(W1,W2,W3和W4),它们代表可能的反式作用因子结合位点,因此可能参与CDR1表达。对这些保护区中的三个的定点突变分析没有显着影响基础报告基因的活性,但是,W1的突变导致报告基因活性的显着增强(近似4倍),被指定为负调控元件(NRE) 。天然启动子(距TSP -1147 bp)中W I序列的突变和缺失以及5'侧翼区域携带性W1(NRE)的顺序缺失也导致启动子报告子活性增强。当在整个白色念珠菌的生长期监测天然(NPY1147)和NRE突变(NGYM1147)启动子整合子的报告基因活性时,两个整合子的报告子活性都有调节,但是有趣的是NRE-突变的启动子总是比天然启动子高3倍。 UV交联和亲和纯化证实,类似于55-kDa核蛋白的纯化蛋白与NRE特异性相互作用。综上所述,我们已鉴定出NRE并纯化了其相互作用蛋白,该蛋白可能参与控制CDR1的基础表达

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