Carlsson A, Engström P, Palva E T, Bennich H
Department of Immunology, University of Uppsala Biomedical Center, Sweden.
Infect Immun. 1991 Sep;59(9):3040-5. doi: 10.1128/iai.59.9.3040-3045.1991.
Attacins are antibacterial proteins synthesized by pupae of the giant silk moth, Hyalophora cecropia, in response to a bacterial infection. In this report we show that the previously described, attacin-induced alteration in the structure and the permeability of the outer membrane of Escherichia coli is associated with a specific inhibition of the synthesis of several outer membrane proteins, including OmpC, OmpF, OmpA, and LamB. The inhibition is expressed as a reduction in the steady-state mRNA levels and is at least in part the results of a block in transcription of the corresponding genes. Transcription directed by the promoter of ompR, the positive regulator of ompC and ompF expression in response to environmental conditions, is also affected by attacin. The effects on mutant strains show that the primary activity of attacin is not mediated by the ompR-envZ regulatory system. Instead our data suggest the existence in E. coli of a previously unknown system for the transcriptional regulation of a large set of outer membrane proteins previously not known to be coordinately regulated. We propose that the activity of attacin is directed towards this system.
攻击素是大蚕蛾(Hyalophora cecropia)蛹在受到细菌感染时合成的抗菌蛋白。在本报告中,我们表明,先前描述的攻击素诱导的大肠杆菌外膜结构和通透性的改变与几种外膜蛋白(包括OmpC、OmpF、OmpA和LamB)合成的特异性抑制有关。这种抑制表现为稳态mRNA水平的降低,并且至少部分是相应基因转录受阻的结果。ompR的启动子指导的转录,ompR是ompC和ompF在响应环境条件时表达的正调节因子,也受到攻击素的影响。对突变菌株的影响表明,攻击素的主要活性不是由ompR-envZ调节系统介导的。相反,我们的数据表明大肠杆菌中存在一个以前未知的系统,用于转录调节一大组以前未知是协同调节的外膜蛋白。我们提出攻击素的活性针对这个系统。