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根癌土壤杆菌中,VirA上预测的ChvE结合位点之外的Glu-255对于糖增强乙酰丁香酮感知至关重要。

Glu-255 outside the predicted ChvE binding site in VirA is crucial for sugar enhancement of acetosyringone perception by Agrobacterium tumefaciens.

作者信息

Banta L M, Joerger R D, Howitz V R, Campbell A M, Binns A N

机构信息

Department of Biology, University of Pennsylvania, Philadelphia 19104-6018.

出版信息

J Bacteriol. 1994 Jun;176(11):3242-9. doi: 10.1128/jb.176.11.3242-3249.1994.

Abstract

Transcriptional activation of the Agrobacterium tumefaciens vir regulon is regulated by phenolics such as acetosyringone (AS), certain monosaccharides, and acidic conditions produced by wounded plant cells. The transmembrane protein VirA acts as an environmental sensor, mediating signal transduction upon perception of these stimuli. Although the periplasmic domain of VirA is not absolutely required for AS-dependent vir gene induction, it is needed for interactions with the periplasmic sugar-binding protein ChvE that result in sugar-induced enhancement of phenolic sensitivity. In this report, we demonstrate that mutations within the periplasmic domain but outside the predicted ChvE binding region can drastically alter the sensitivity of VirA to As. Using site-directed mutagenesis, we have characterized the roles of three individual amino acids in sugar-dependent AS sensitivity and have correlated the induction phenotype with the tumorigenic capacity of strains expressing mutant versions of VirA. Substitution of leucine for Glu-255 abolishes sugar enhancement while replacement with aspartic acid results in a wild-type phenotype. This residue lies outside the predicted ChvE binding site and thus identifies a new region of the VirA periplasmic domain crucial for the enhancement of vir gene induction by carbohydrates. In the absence of inducing sugar, wild-type VirA protein appears to be subject to some form of inhibition that suppresses the maximal level of transcriptional activation; deletions within the periplasmic region relieve this suppression.

摘要

根癌土壤杆菌毒力调节子的转录激活受诸如乙酰丁香酮(AS)等酚类物质、某些单糖以及受伤植物细胞产生的酸性条件调控。跨膜蛋白VirA作为一种环境传感器,在感知这些刺激后介导信号转导。虽然VirA的周质结构域对于AS依赖的毒力基因诱导并非绝对必需,但它对于与周质糖结合蛋白ChvE的相互作用是必需的,这种相互作用导致糖诱导的酚类敏感性增强。在本报告中,我们证明周质结构域内但在预测的ChvE结合区域之外的突变可显著改变VirA对AS的敏感性。利用定点诱变,我们已确定了三个单个氨基酸在糖依赖的AS敏感性中的作用,并将诱导表型与表达突变型VirA的菌株的致瘤能力相关联。用亮氨酸取代Glu - 255消除了糖增强作用,而用天冬氨酸取代则产生野生型表型。该残基位于预测的ChvE结合位点之外,因此确定了VirA周质结构域中一个对碳水化合物增强毒力基因诱导至关重要的新区域。在没有诱导糖的情况下,野生型VirA蛋白似乎受到某种形式抑制,这种抑制作用抑制了转录激活的最大水平;周质区域内的缺失可解除这种抑制。

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