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对来自解淀粉欧文氏菌的一个基因座的特性进行研究,该基因座在欧文氏菌属细菌的胞外多糖合成中具有调控功能。

Characterization of a gene locus from Erwinia amylovora with regulatory functions in exopolysaccharide synthesis of Erwinia spp.

作者信息

Aldridge P, Bernhard F, Bugert P, Coplin D L, Geider K

机构信息

Department of Plant Pathology, Ohio State University, Columbus 43210, USA.

出版信息

Can J Microbiol. 1998 Jul;44(7):657-66.

PMID:9783426
Abstract

In a genomic library of Erwinia amylovora, a locus has been identified that can suppress an Erwinia stewartii rcsA mutant. In addition, the locus induced a mucoid sticky phenotype of colonies in a wild-type strain of Erwinia stewartii and increased exopolysaccharide synthesis in several species of bacteria belonging to the genus Erwinia. An open reading frame was identified at this locus encoding a 225 amino acid protein that contained a helix-turn-helix motif typical of transcriptional regulators. The corresponding gene was subsequently named rcsV (regulator of capsular synthesis affecting viscosity). A mutant of rcsV in wild-type Erwinia amylovora had no detectable phenotype and produced typical levels of amylovoran under laboratory conditions. The rcsV gene on a high copy number plasmid under the control of its own promoter did not alter amylovoran production, in contrast to in-frame fusions of the structural gene in expression vectors. Since even the lac promoter was inert in the expression of rcsV, a DNA-binding protein could inhibit transcription of the gene in Erwinia amylovora. On the other hand, an Erwinia amylovora rcsA mutant was suppressed by rcsV when its promoter was replaced and the structural gene fused in-frame with lacZ' or malE. Northern blots, with total RNA from Erwinia amylovora, or promoter analysis using the GUS reporter gene did not show expression of rcsV in Erwinia amylovora, although primer extension analysis did. RcsV could be a component involved in the regulation of amylovoran synthesis, and gene expression may require an unknown external signal during the life cycle or pathogenesis of Erwinia amylovora.

摘要

在梨火疫病菌的基因组文库中,已鉴定出一个位点,该位点可抑制斯氏欧文氏菌的rcsA突变体。此外,该位点在斯氏欧文氏菌野生型菌株中诱导菌落出现黏液状粘性表型,并增加了欧文氏菌属几种细菌的胞外多糖合成。在该位点鉴定出一个开放阅读框,其编码一个含有225个氨基酸的蛋白质,该蛋白质包含转录调节因子典型的螺旋-转角-螺旋基序。相应的基因随后被命名为rcsV(影响粘度的荚膜合成调节因子)。野生型梨火疫病菌中rcsV的突变体在实验室条件下没有可检测到的表型,并且产生典型水平的梨火疫病菌多糖。与表达载体中结构基因的框内融合不同,在其自身启动子控制下的高拷贝数质粒上的rcsV基因不会改变梨火疫病菌多糖的产生。由于即使是lac启动子在rcsV的表达中也是无活性的,一种DNA结合蛋白可能会抑制梨火疫病菌中该基因的转录。另一方面,当梨火疫病菌rcsA突变体的启动子被替换且结构基因与lacZ'或malE框内融合时,rcsV可抑制该突变体。用来自梨火疫病菌的总RNA进行的Northern印迹分析,或使用GUS报告基因进行的启动子分析均未显示rcsV在梨火疫病菌中的表达,尽管引物延伸分析显示有表达。RcsV可能是参与梨火疫病菌多糖合成调控的一个组分,并且在梨火疫病菌的生命周期或致病过程中,基因表达可能需要一个未知的外部信号。

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