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在 Comamonas sp. 菌株 E6 中对邻苯二甲酸分解代谢操纵子的转录调控。

Transcriptional regulation of the terephthalate catabolism operon in Comamonas sp. strain E6.

机构信息

Department of Bioengineering, Nagaoka University of Technology, Nagaoka, Niigata 940-2188, Japan.

出版信息

Appl Environ Microbiol. 2010 Sep;76(18):6047-55. doi: 10.1128/AEM.00742-10. Epub 2010 Jul 23.

Abstract

Two almost identical gene clusters, tphR(I)C(I)A2(I)A3(I)B(I)A1(I) and tphR(II)C(II)A2(II)A3(II)B(II)A1(II), are responsible for the conversion of terephthalate (TPA) to protocatechuate in Comamonas sp. strain E6. In the present study, we investigated the transcriptional regulation of the tphR(II)C(II)A2(II)A3(II)B(II)A1(II) gene cluster. Reverse transcription-PCR analysis suggested that the tphR(II)C(II)A2(II)A3(II)B(II)A1(II) genes form two transcriptional units, the tphC(II)A2(II)A3(II)B(II)A1(II) catabolism operon and tphR(II), with the latter encoding an IclR-type transcriptional regulator (ITTR). The transcription start site of the tph(II) catabolism operon was mapped at 21 nucleotides upstream of the initiation codon of tphC(II). The lacZ transcriptional fusion experiments showed that tphR(II) encodes a transcriptional activator of the tph(II) catabolism operon and that TPA acts as an inducer. On the other hand, TphR(II) appeared to repress its own transcription regardless of the presence of TPA. The analysis of mutant derivatives of E6 indicated that tphR(II) is essential for the transcriptional activation of the tph(II) catabolism operon and the growth on TPA of a tph(I)-deficient derivative of E6. Purified His-tagged TphR(II) bound specifically to the tphR(II)-tphC(II) intergenic region containing a 21-bp inverted repeat sequence. Alignment of the inverted repeat sequences in the binding sites for TphR(II) and other members of ITTRs revealed highly conserved nucleotides. The substitution of conserved nucleotides resulted in significantly reduced TPA-dependent transcriptional activation from the tphC(II) promoter and reduced binding to His-tagged TphR(II). These results clearly indicate that the conserved nucleotides are required for the inducible expression of the tph(II) catabolism operon regulated by TphR(II).

摘要

两个几乎相同的基因簇,tphR(I)C(I)A2(I)A3(I)B(I)A1(I)和 tphR(II)C(II)A2(II)A3(II)B(II)A1(II),负责将对苯二甲酸 (TPA) 转化为 Comamonas sp. strain E6 中的原儿茶酸。在本研究中,我们研究了 tphR(II)C(II)A2(II)A3(II)B(II)A1(II)基因簇的转录调控。逆转录-PCR 分析表明,tphR(II)C(II)A2(II)A3(II)B(II)A1(II)基因形成两个转录单元,tphC(II)A2(II)A3(II)B(II)A1(II)分解代谢操纵子和 tphR(II),后者编码 IclR 型转录调节因子 (ITTR)。tph(II)分解代谢操纵子的转录起始位点位于 tphC(II)起始密码子上游 21 个核苷酸处。lacZ 转录融合实验表明,tphR(II)编码 tph(II)分解代谢操纵子的转录激活子,TPA 作为诱导物。另一方面,TPA 的存在与否似乎都能抑制 TphR(II)自身的转录。对 E6 的突变衍生物的分析表明,tphR(II)对于 tph(II)分解代谢操纵子的转录激活和 E6 的 tph(I)缺陷衍生物在 TPA 上的生长是必需的。纯化的 His 标记的 TphR(II)特异性结合到包含 21 个碱基对反向重复序列的 tphR(II)-tphC(II)基因间区。TphR(II)和其他 ITTRs 的结合位点的反向重复序列的比对显示高度保守的核苷酸。保守核苷酸的替换导致 tphC(II)启动子的 TPA 依赖性转录激活显著降低,并且与 His 标记的 TphR(II)的结合减少。这些结果清楚地表明,保守核苷酸是 TphR(II)调节的 tph(II)分解代谢操纵子的诱导表达所必需的。

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