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囊性纤维化中的黏液型铜绿假单胞菌:muc基因座的突变影响algR和algD基因在环境刺激下的转录。

Mucoid Pseudomonas aeruginosa in cystic fibrosis: mutations in the muc loci affect transcription of the algR and algD genes in response to environmental stimuli.

作者信息

Deretic V, Govan J R, Konyecsni W M, Martin D W

机构信息

Department of Microbiology, University of Texas Health Science Center, San Antonio 78284-7758.

出版信息

Mol Microbiol. 1990 Feb;4(2):189-96. doi: 10.1111/j.1365-2958.1990.tb00586.x.

Abstract

Increased levels of alginate biosynthesis cause mucoidy in Pseudomonas aeruginosa, a virulence factor of particular importance in cystic fibrosis. The algR gene product, which controls transcription of a key alginate biosynthetic gene, algD, is homologous to the activator members of the two-component, environmentally responsive systems (NtrC, OmpR, PhoB, ArcA, etc). In this report, we show that mutations in the muc loci, (muc-2, muc-22, and muc-23, in the standard genetic P. aeruginosa strain PAO, as well as a mapped muc allele in an isolate from a cystic fibrosis patient) affect transcription of algD and algR. This influence was strongly dependent on environmental factors. Regulation by nitrogen was observed in all strains examined, but the absolute transcriptional levels, determining the mucoid or nonmucoid status, were strain (muc allele)-dependent. Increased concentrations of NaCl in the medium, an osmolyte which is elevated in cystic fibrosis lung secretions, resulted in an increased algD transcription and mucoid phenotype in a muc-2 strain; the same conditions, however, produced a nonmucoid phenotype in the muc-23 background and abolished algD transcription. Mutations in the muc loci may cause mucoidy by deregulating the normal response of the alginate system to environmental stimuli.

摘要

藻酸盐生物合成水平的提高会导致铜绿假单胞菌产生黏液样特性,这是囊性纤维化中一个特别重要的毒力因子。藻R基因产物控制着关键藻酸盐生物合成基因藻D的转录,它与双组分环境响应系统(NtrC、OmpR、PhoB、ArcA等)的激活成员同源。在本报告中,我们表明黏液位点(标准遗传铜绿假单胞菌菌株PAO中的muc-2、muc-22和muc-23,以及一名囊性纤维化患者分离株中的一个定位的黏液等位基因)的突变会影响藻D和藻R的转录。这种影响强烈依赖于环境因素。在所检测的所有菌株中均观察到氮的调节作用,但决定黏液样或非黏液样状态的绝对转录水平取决于菌株(黏液等位基因)。培养基中NaCl浓度的增加(囊性纤维化肺分泌物中升高的一种渗透剂)导致muc-2菌株中藻D转录增加和黏液样表型;然而,相同条件在muc-23背景下产生非黏液样表型并消除藻D转录。黏液位点的突变可能通过解除藻酸盐系统对环境刺激的正常反应的调节而导致黏液样特性。

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