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D101对于根癌土壤杆菌群体感应淬灭系统的阻遏蛋白AttJ的功能至关重要。

D101 is critical for the function of AttJ, a repressor of quorum quenching system in Agrobacterium tumefaciens.

作者信息

Wang Chao, Yan Chunlan, Gao Yong-Gui, Zhang Lian-Hui

机构信息

Institute of Molecular and Cell Biology, 61 Biopolis Drive, Singapore, 138673, Singapore.

出版信息

J Microbiol. 2015 Sep;53(9):623-32. doi: 10.1007/s12275-015-5100-x. Epub 2015 Aug 1.

Abstract

The quorum quenching system of Agrobacterium tumefaciens is specifically activated upon entering the stationary phase. Evidence has shown that this system includes two key components: the IclR-type transcriptional factor AttJ (also named as BlcR) and the AHL-lactonase AttM (also named as BlcC). At exponential phase, AttJ binds to the promoter region of attM and thus suppresses the expression of attM. At stationary phase, however, the small molecule SSA directly binds to AttJ and relieves its inhibition of AttJ and thereby triggers the expression of attM. While the regulation of AttM has been extensively investigated, little is known about the regulation of AttJ. In this study, we demonstrated the D101 amino acid of AttJ is essential for the AttJ function. In vitro, the variant protein of AttJD101H appeared to be readily aggregated. In vivo, the D101H mutation in AttJ entirely abolished the inhibitory activity of AttJ and overexpressed attM in A. tumefaciens A6. In addition, D101H mutation led to an overexpression of attJ, indicating an auto-regulatory mechanism for the attJ regulation. Put together, these findings demonstrate that D101 is an important amino acid for the transcription activity of AttJ and the transcription of attJ is regulated by a negative feedback loop. These results expand previous biochemical characterization of AttJ and provide new mechanistic insights into the regulation of quorum quenching in A. tumefaciens.

摘要

根癌农杆菌的群体感应淬灭系统在进入稳定期时被特异性激活。有证据表明,该系统包括两个关键成分:IclR型转录因子AttJ(也称为BlcR)和AHL内酯酶AttM(也称为BlcC)。在指数生长期,AttJ与attM的启动子区域结合,从而抑制attM的表达。然而,在稳定期,小分子SSA直接与AttJ结合,解除其对AttJ的抑制,从而触发attM的表达。虽然对AttM的调控已进行了广泛研究,但对AttJ的调控却知之甚少。在本研究中,我们证明了AttJ的D101氨基酸对AttJ功能至关重要。在体外,AttJD101H变体蛋白似乎易于聚集。在体内,AttJ中的D101H突变完全消除了AttJ的抑制活性,并在根癌农杆菌A6中使attM过表达。此外,D101H突变导致attJ过表达,表明存在attJ调控的自调节机制。综上所述,这些发现表明D101是AttJ转录活性的重要氨基酸,且attJ的转录受负反馈环调控。这些结果扩展了先前对AttJ的生化特性描述,并为根癌农杆菌群体感应淬灭调控提供了新的机制见解。

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