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铜绿假单胞菌PAO1菌株中黏液样转化对整体蛋白质表达影响的蛋白质组分析显示二硫键异构酶dsbA被诱导。

Proteome analysis of the effect of mucoid conversion on global protein expression in Pseudomonas aeruginosa strain PAO1 shows induction of the disulfide bond isomerase, dsbA.

作者信息

Malhotra S, Silo-Suh L A, Mathee K, Ohman D E

机构信息

Department of Microbiology, University of Tennessee, Memphis, Tennessee, USA.

出版信息

J Bacteriol. 2000 Dec;182(24):6999-7006. doi: 10.1128/JB.182.24.6999-7006.2000.

Abstract

Pseudomonas aeruginosa strains that cause chronic pulmonary infections in cystic fibrosis patients typically undergo mucoid conversion. The mucoid phenotype indicates alginate overproduction and is often due to defects in MucA, an antisigma factor that controls the activity of sigma-22 (AlgT [also called AlgU]), which is required for the activation of genes for alginate biosynthesis. In this study we hypothesized that mucoid conversion may be part of a larger response that activates genes other than those for alginate synthesis. To address this, a two-dimensional (2-D) gel analysis was employed to compare total proteins in strain PAO1 to those of its mucA22 derivative, PDO300, in order to identify protein levels enhanced by mucoid conversion. Six proteins that were clearly more abundant in the mucoid strain were observed. The amino termini of such proteins were determined and used to identify the gene products in the genomic database. Proteins involved in alginate biosynthesis were expected among these, and two (AlgA and AlgD) were identified. This result verified that the 2-D gel approach could identify gene products under sigma-22 control and upregulated by mucA mutation. Two other protein spots were also clearly upregulated in the mucA22 background, and these were identified as porin F (an outer membrane protein) and a homologue of DsbA (a disulfide bond isomerase). Single-copy gene fusions were constructed to test whether these proteins were enhanced in the mucoid strain due to increased transcription. The oprF-lacZ fusion showed little difference in levels of expression in the two strains. However, the dsbA-lacZ fusion showed two- to threefold higher expression in PDO300 than in PAO1, suggesting that its promoter was upregulated by the deregulation of sigma-22 activity. A dsbA-null mutant was constructed in PAO1 and shown to have defects predicted for a cell with reduced disulfide bond isomerase activity, namely, reduction in periplasmic alkaline phosphatase activity, increased sensitivity to dithiothreitol, reduced type IV pilin-mediated twitching motility, and reduced accumulation of extracellular proteases, including elastase. Although efficient secretion of elastase in the dsbA mutant was still demonstrable, the elastase produced appeared to be unstable, possibly as a result of mispaired disulfide bonds. Disruption of dsbA in the mucoid PDO300 background did not affect alginate production. Thus, even though dsbA is coregulated with mucoid conversion, it was not required for alginate production. This suggests that mucA mutation, which deregulates sigma-22, results in a global response that includes other factors in addition to increasing the production of alginate.

摘要

在囊性纤维化患者中引发慢性肺部感染的铜绿假单胞菌菌株通常会发生黏液样转变。黏液样表型表明藻酸盐产生过多,这通常是由于MucA缺陷所致,MucA是一种抗σ因子,可控制σ-22(AlgT [也称为AlgU])的活性,而σ-22是藻酸盐生物合成基因激活所必需的。在本研究中,我们假设黏液样转变可能是激活藻酸盐合成基因以外的其他基因的更大反应的一部分。为了解决这个问题,我们采用二维(2-D)凝胶分析来比较PAO1菌株与其mucA22衍生物PDO300的总蛋白,以鉴定因黏液样转变而增加的蛋白水平。观察到六种蛋白在黏液样菌株中明显更为丰富。确定了这些蛋白的氨基末端,并用于在基因组数据库中鉴定基因产物。预计其中会有参与藻酸盐生物合成的蛋白,并且鉴定出了两种(AlgA和AlgD)。这一结果证实了二维凝胶方法可以鉴定在σ-22控制下且因mucA突变而上调的基因产物。另外两个蛋白斑点在mucA22背景中也明显上调,它们被鉴定为孔蛋白F(一种外膜蛋白)和DsbA的同源物(一种二硫键异构酶)。构建了单拷贝基因融合体以测试这些蛋白在黏液样菌株中是否由于转录增加而增强。oprF-lacZ融合体在两种菌株中的表达水平几乎没有差异。然而,dsbA-lacZ融合体在PDO300中的表达比在PAO1中高两到三倍,这表明其启动子因σ-22活性的失调而上调。在PAO1中构建了一个dsbA缺失突变体,结果表明它具有二硫键异构酶活性降低的细胞所预测的缺陷,即周质碱性磷酸酶活性降低、对二硫苏糖醇的敏感性增加、IV型菌毛介导的颤动运动减少以及包括弹性蛋白酶在内的细胞外蛋白酶积累减少。尽管在dsbA突变体中仍可证明弹性蛋白酶的有效分泌,但所产生的弹性蛋白酶似乎不稳定,可能是由于二硫键错配所致。在黏液样PDO300背景中破坏dsbA并不影响藻酸盐的产生。因此,即使dsbA与黏液样转变共同调控,但它并非藻酸盐产生所必需。这表明解除对σ-22调控的mucA突变会导致一种全局反应,除了增加藻酸盐的产生外,还包括其他因素。

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