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CbrA是苜蓿中华根瘤菌中细胞表面生理学和豆科植物共生的稳定期调节因子。

CbrA is a stationary-phase regulator of cell surface physiology and legume symbiosis in Sinorhizobium meliloti.

作者信息

Gibson Katherine E, Campbell Gordon R, Lloret Javier, Walker Graham C

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

J Bacteriol. 2006 Jun;188(12):4508-21. doi: 10.1128/JB.01923-05.

Abstract

Sinorhizobium meliloti produces an exopolysaccharide called succinoglycan that plays a critical role in promoting symbiosis with its host legume, alfalfa (Medicago sativa). We performed a transposon mutagenesis and screened for mutants with altered succinoglycan production and a defect in symbiosis. In this way, we identified a putative two-component histidine kinase associated with a PAS sensory domain, now designated CbrA (calcofluor-bright regulator A). The cbrA::Tn5 mutation causes overproduction of succinoglycan and results in increased accumulation of low-molecular-weight forms of this exopolysaccharide. Our results suggest the cbrA::Tn5 allele leads to this succinoglycan phenotype through increased expression of exo genes required for succinoglycan biosynthesis and modification. Interestingly, CbrA-dependent regulation of exo and exs genes is observed almost exclusively during stationary-phase growth. The cbrA::Tn5 mutant also has an apparent cell envelope defect, based on increased sensitivity to a number of toxic compounds, including the bile salt deoxycholate and the hydrophobic dye crystal violet. Growth of the cbrA mutant is also slowed under oxidative-stress conditions. The CbrA-regulated genes exsA and exsE encode putative inner membrane ABC transporters with a high degree of similarity to lipid exporters. ExsA is homologous to the Escherichia coli MsbA protein, which is required for lipopolysaccharide transport, while ExsE is a member of the eukaryotic family of ABCD/hALD peroxisomal membrane proteins involved in transport of very long-chain fatty acids, which are a unique component of the lipopolysaccharides of alphaproteobacteria. Thus, CbrA could play a role in regulating the lipopolysaccharide or lipoprotein components of the cell envelope.

摘要

苜蓿中华根瘤菌产生一种名为琥珀聚糖的胞外多糖,它在促进与宿主豆科植物苜蓿(紫花苜蓿)的共生中起着关键作用。我们进行了转座子诱变,并筛选了琥珀聚糖产生改变且共生存在缺陷的突变体。通过这种方式,我们鉴定出了一种与PAS传感结构域相关的假定双组分组氨酸激酶,现命名为CbrA(钙荧光亮调节因子A)。cbrA::Tn5突变导致琥珀聚糖过量产生,并导致这种胞外多糖低分子量形式的积累增加。我们的结果表明,cbrA::Tn5等位基因通过增加琥珀聚糖生物合成和修饰所需的exo基因的表达导致这种琥珀聚糖表型。有趣的是,几乎仅在稳定期生长期间观察到CbrA对外源基因和exs基因的依赖性调节。基于对多种有毒化合物(包括胆盐脱氧胆酸盐和疏水染料结晶紫)的敏感性增加,cbrA::Tn5突变体还存在明显的细胞包膜缺陷。在氧化应激条件下,cbrA突变体的生长也会减慢。CbrA调节的基因exsA和exsE编码与脂质输出蛋白高度相似的假定内膜ABC转运蛋白。ExsA与大肠杆菌MsbA蛋白同源,后者是脂多糖转运所必需的,而ExsE是参与超长链脂肪酸转运的ABCD/hALD过氧化物酶体膜蛋白真核家族的成员,超长链脂肪酸是α-变形菌脂多糖的独特成分。因此,CbrA可能在调节细胞包膜的脂多糖或脂蛋白成分中发挥作用。

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