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鉴定和表征 AqsR(一种在嗜油寡养单胞菌 DR1 中的 LuxR 型调控因子)调控的基因。

Identification and characterization of genes regulated by AqsR, a LuxR-type regulator in Acinetobacter oleivorans DR1.

机构信息

Department of Environmental Science and Ecological Engineering, Korea University, Anam-Dong 5Ga, Seungbuk-Ku, Seoul, 136-713, Republic of Korea.

出版信息

Appl Microbiol Biotechnol. 2013 Aug;97(15):6967-78. doi: 10.1007/s00253-013-5006-7. Epub 2013 Jun 11.

Abstract

The complete genome of Acinetobacter oleivorans DR1 contains AqsR and AqsI genes, which are LuxR and LuxI homolog, respectively. In a previous study, we demonstrated that quorum sensing (QS) signals play an important role in biofilm formation and hexadecane biodegradation. However, the regulation of genes controlled by the QS system in DR1 remains unexplored. We constructed an aqsR mutant and performed RNA sequencing analysis to understand the QS system. A total of 353 genes were differentially expressed during the stationary phase of wild-type cells compared to that of the aqsR mutant. AqsR appears to be an exceptionally important regulator because knockout of aqsR affected global gene expression. Genes involved in posttranslational modification, chaperones, cell wall structure, secondary metabolites biosynthesis, and stress defense were highly upregulated only in the wild type. Among upregulated genes, both the AOLE_03905 (putative surface adhesion protein) and the AOLE_11355 (L-asparaginase) genes have putative LuxR binding sites at their promoter regions. Soluble AqsR proteins were successfully purified in Escherichia coli harboring both aqsR and aqsI. Comparison of QS signals in an AqsI-AqsR co-overexpression strain with N-acyl homoserine lactone standards showed that the cognate N-acyl homoserine lactone binding to AqsR might be 3OH C12HSL. Our electrophoretic mobility shift assays with purified AqsR revealed direct binding of AqsR to those promoter regions. Our data showed that AqsR functions as an important regulator and is associated with several phenotypes, such as hexadecane utilization, biofilm formation, and sensitivity to cumene hydroperoxide.

摘要

耐油不动杆菌 DR1 的全基因组包含 AqsR 和 AqsI 基因,它们分别是 LuxR 和 LuxI 的同源物。在之前的研究中,我们证明了群体感应(QS)信号在生物膜形成和十六烷生物降解中发挥重要作用。然而,QS 系统控制的基因在 DR1 中的调控仍未被探索。我们构建了一个 aqsR 突变体,并进行了 RNA 测序分析,以了解 QS 系统。与 aqsR 突变体相比,野生型细胞在静止期有 353 个基因表达差异。AqsR 似乎是一个非常重要的调节剂,因为敲除 aqsR 会影响全局基因表达。参与翻译后修饰、伴侣蛋白、细胞壁结构、次生代谢物生物合成和应激防御的基因在野生型中高度上调。在上调的基因中,AOLE_03905(假定的表面黏附蛋白)和 AOLE_11355(天冬酰胺酶)基因的启动子区域都有假定的 LuxR 结合位点。在含有 aqsR 和 aqsI 的大肠杆菌中成功纯化了可溶性 AqsR 蛋白。与 N-酰基高丝氨酸内酯标准品比较 AqsI-AqsR 共表达菌株中的 QS 信号表明,与 AqsR 结合的同源 N-酰基高丝氨酸内酯可能是 3OH C12HSL。我们用纯化的 AqsR 进行的电泳迁移率变动分析显示 AqsR 直接与这些启动子区域结合。我们的数据表明,AqsR 作为一个重要的调节剂,与几种表型有关,如十六烷利用、生物膜形成和对 cumene hydroperoxide 的敏感性。

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