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金属诱导的油棕金属硫蛋白样基因启动子(MT3-A)在原核生物中的活性。

Metal inducible activity of the oil palm metallothionein-like gene promoter (MT3-A) in prokaryotes.

机构信息

Department of Agriculture Technology, Faculty of Agriculture, Universiti Putra Malaysia, 43400 Serdang, Selangor, Malaysia.

出版信息

J Biosci Bioeng. 2011 Feb;111(2):217-25. doi: 10.1016/j.jbiosc.2010.09.010. Epub 2010 Nov 1.

Abstract

Reporter gene activity under the regulation of the oil palm metallothionein-like gene, MT3-A promoter was assessed in prokaryotes. Vector constructs containing MT3-A promoter with (W1MT3-A) and without (W2MT3-A) five prime untranslated region (5'-UTR) fused to ß-glucuronidase (GUS) gene in pCAMBIA 1304 vector were produced. 5'-rapid amplification of cDNA ends (RACE) using mRNA isolated from Escherichia coli and Agrobacterium tumefaciens harboring W1MT3-A confirmed that fusion transcripts of MT3-A 5'-UTR-GUS were successfully produced in both bacteria. Competitive PCR and GUS fluorometric assay showed changes in the level of GUS gene transcripts and enzyme activity in response to increasing concentrations of Cu²+ and Zn²+. The application of Cu²+ increased GUS activity and GUS mRNA level in both bacteria. In E. coli, a high level of GUS activity driven by W1MT3-A and W2MT3-A was observed in treatment with 25 μM Cu²+ resulting in an increase in the GUS mRNA level to 7.2 and 7.5 x 10⁻⁴ pmol/μl respectively, compared to the control (5.1 x 10⁻⁴ pmol/μl). The lowest GUS activity and GUS mRNA level were obtained for W1MT3-A and W2MT3-A in the presence of 100 μM Cu²+ in both bacteria compared to the control (without Cu²+). The application of different Zn²+ concentrations resulted in a strong decrease in the GUS activity and GUS mRNA level in E. coli and A. tumefaciens. These findings showed that the oil palm MT3-A promoter is functional in prokaryotes and produced detectable GUS transcripts and enzyme activities. This promoter may potentially be used in prokaryotic systems which require metal inducible gene expression.

摘要

在原核生物中,评估了在油棕金属硫蛋白样基因 MT3-A 启动子调控下的报告基因活性。构建了含有 MT3-A 启动子(W1MT3-A)和不含 5′非翻译区(5′-UTR)的载体构建体,融合到 pCAMBIA 1304 载体中的β-葡萄糖醛酸酶(GUS)基因。使用从含有 W1MT3-A 的大肠杆菌和根癌农杆菌中分离的 mRNA 进行 5′-快速扩增 cDNA 末端(RACE),证实了 MT3-A 5′-UTR-GUS 的融合转录本在两种细菌中均成功产生。竞争性 PCR 和 GUS 荧光测定显示,GUS 基因转录本和酶活性水平随 Cu²+和 Zn²+浓度的增加而变化。Cu²+的应用增加了两种细菌中 GUS 活性和 GUS mRNA 水平。在大肠杆菌中,用 25 μM Cu²+处理时,W1MT3-A 和 W2MT3-A 驱动的 GUS 活性水平较高,导致 GUS mRNA 水平分别增加到 7.2 和 7.5 x 10⁻⁴ pmol/μl,而对照(5.1 x 10⁻⁴ pmol/μl)。与对照(不含 Cu²+)相比,在两种细菌中,用 100 μM Cu²+处理时,W1MT3-A 和 W2MT3-A 的 GUS 活性和 GUS mRNA 水平最低。不同 Zn²+浓度的应用导致大肠杆菌和根癌农杆菌中 GUS 活性和 GUS mRNA 水平强烈下降。这些发现表明,油棕 MT3-A 启动子在原核生物中具有功能,并产生可检测的 GUS 转录本和酶活性。该启动子可能在需要金属诱导基因表达的原核系统中得到应用。

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