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H-NS和GadX在大肠杆菌谷氨酸脱羧酶依赖性酸抗性系统调控中的拮抗作用

Antagonistic role of H-NS and GadX in the regulation of the glutamate decarboxylase-dependent acid resistance system in Escherichia coli.

作者信息

Giangrossi Mara, Zattoni Stefano, Tramonti Angela, De Biase Daniela, Falconi Maurizio

机构信息

Laboratorio di Genetica, Dipartimento di Biologia MCA, Università di Camerino, 62032 Camerino (MC), Italy.

出版信息

J Biol Chem. 2005 Jun 3;280(22):21498-505. doi: 10.1074/jbc.M413255200. Epub 2005 Mar 28.

Abstract

One of the most efficient systems of acid resistance in Escherichia coli, the gad system, is based on the coordinated action of two isoforms of glutamate decarboxylase (GadA and GadB) and of a specific glutamate/gamma-aminobutyrate antiporter (GadC). The gadA/BC genes, activated in response to acid stress and in stationary phase cells, are subjected to complex circuits of regulation involving sigma70, sigmaS, cAMP receptor protein, H-NS, EvgAS, TorRS, GadE, GadX, GadW, and YdeO. Herein, we provide evidence that the nucleoid-associated protein H-NS directly functions as repressor of gadA, one of the structural genes, and gadX, a regulatory gene encoding one of the primary activators of the gad system. Band shift and DNase I footprints reveal that H-NS indeed binds to specific sites in the promoter regions of gadA and gadX and represses the transcription of these genes both in an in vitro system and in vivo. Moreover, we show that a maltose-binding protein MalE-GadX fusion is able to stimulate the promoter activity of gadA/BC, thus indicating that GadX is by itself able to up-regulate the gad genes and that a functional competition between H-NS and GadX takes place at the gadA promoter. Altogether, our results indicate that H-NS directly inhibits gadA and gadX transcription and, by controlling the intracellular level of the activator GadX, indirectly affects the expression of the whole gad system.

摘要

大肠杆菌中最有效的耐酸系统之一,即gad系统,是基于谷氨酸脱羧酶的两种同工型(GadA和GadB)以及一种特定的谷氨酸/γ-氨基丁酸反向转运蛋白(GadC)的协同作用。gadA/BC基因在酸应激和稳定期细胞中被激活,其受到复杂的调控回路影响,涉及σ70、σS、环磷酸腺苷受体蛋白、H-NS、EvgAS、TorRS、GadE、GadX、GadW和YdeO。在此,我们提供证据表明,类核相关蛋白H-NS直接作为结构基因之一的gadA和gadX(编码gad系统主要激活因子之一的调控基因)的阻遏物发挥作用。凝胶迁移实验和DNase I足迹实验表明,H-NS确实与gadA和gadX启动子区域的特定位点结合,并在体外系统和体内均抑制这些基因的转录。此外,我们表明麦芽糖结合蛋白MalE-GadX融合蛋白能够刺激gadA/BC的启动子活性,从而表明GadX自身能够上调gad基因,并且在gadA启动子处H-NS和GadX之间存在功能竞争。总之,我们的结果表明,H-NS直接抑制gadA和gadX的转录,并通过控制激活因子GadX的细胞内水平,间接影响整个gad系统的表达。

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