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Identification of the Cadmium-Inducible Hansenula polymorpha SEO1 Gene Promoter by Transcriptome Analysis and Its Application to Whole-Cell Heavy-Metal Detection Systems

机译:转录组分析鉴定镉诱导的多形汉逊酵母SEO1基因启动子及其在全细胞重金属检测系统中的应用

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摘要

The genomewide gene expression profiling of the methylotrophic yeast Hansenula polymorpha exposed to cadmium (Cd) allowed us to identify novel genes responsive to Cd treatment. To select genes whose promoters can be useful for construction of a cellular Cd biosensor, we further analyzed a set of H. polymorpha genes that exhibited >6-fold induction upon treatment with 300 μM Cd for 2 h. The putative promoters, about 1,000-bp upstream fragments, of these genes were fused with the yeast-enhanced green fluorescence protein (GFP) gene. The resultant reporter cassettes were introduced into H. polymorpha to evaluate promoter strength and specificity. The promoter derived from the H. polymorpha SEO1 gene (HpSEO1) was shown to drive most strongly the expression of GFP upon Cd treatment among the tested promoters. The Cd-inducible activity was retained in the 500-bp deletion fragment of the HpSEO1 promoter but was abolished in the further truncated 250-bp fragment. The 500-bp HpSEO1 promoter directed specific expression of GFP upon exposure to Cd in a dose-dependent manner, with Cd detection ranging from 1 to 900 μM. Comparative analysis of the Saccharomyces cerevisiae SEO1 (ScSEO1) promoter revealed that the ScSEO1 promoter has a broader specificity for heavy metals and is responsive to arsenic and mercury in addition to Cd. Our data demonstrate the potential use of the HpSEO1 promoter as a bioelement in whole-cell biosensors to monitor heavy metal contamination, particularly Cd.
机译:暴露于镉(Cd)的甲基营养酵母多形汉逊酵母(Hansenula polymorpha)的全基因组基因表达谱分析使我们能够鉴定出对Cd处理有响应的新基因。为了选择启动子可用于构建细胞Cd生物传感器的基因,我们进一步分析了一组多形汉逊酵母基因,用300μMCd处理2 h后,它们表现出> 6倍的诱导。这些基因的推定启动子(约1000 bp上游片段)与酵母增强的绿色荧光蛋白(GFP)基因融合。将得到的报道基因盒引入多形汉逊酵母以评估启动子强度和特异性。在测试的启动子中,来自多形汉逊酵母SEO1基因(HpSEO1)的启动子显示出在Cd处理后最强烈地驱动GFP的表达。 Cd诱导的活性保留在HpSEO1启动子的500 bp缺失片段中,但在进一步截短的250 bp片段中被废除了。 500 bp HpSEO1启动子以剂量依赖的方式指导Cd暴露后GFP的特异性表达,Cd检测范围为1至900μM。对酿酒酵母SEO1(ScSEO1)启动子的比较分析表明,ScSEO1启动子对重金属具有更广泛的特异性,除Cd外还对砷和汞有反应。我们的数据证明了HpSEO1启动子在全细胞生物传感器中作为生物元素来监测重金属污染(尤其是Cd)的潜在用途。

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