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大肠杆菌中营养限制对孔蛋白介导的外膜通透性的调控。

Regulation of porin-mediated outer membrane permeability by nutrient limitation in Escherichia coli.

作者信息

Liu X, Ferenci T

机构信息

Department of Microbiology, University of Sydney, Sydney, New South Wales 2006, Australia.

出版信息

J Bacteriol. 1998 Aug;180(15):3917-22. doi: 10.1128/JB.180.15.3917-3922.1998.

Abstract

OmpF and OmpC porins were differentially regulated by nutrient limitation and growth rate in glucose- or nitrogen-limited chemostat cultures of Escherichia coli. Transcriptional and translational ompF fusions showed a sharp peak of expression under glucose limitation at D = 0.3 h-1, with lower amounts at lower and higher growth rates. The peak of OmpR-dependent transcriptional stimulation of ompF under glucose limitation in minimal salts media was about 20-fold above nutrient excess levels and 3-fold higher than that achieved with low osmolarity. Analysis of outer membrane protein levels and results of growth competition experiments with porin mutants were consistent with the enhanced role of OmpF under glucose limitation, but not N limitation. In contrast, OmpC was the major porin under N limitation but was increasingly expressed under glucose limitation at very low growth rates approaching starvation, when OmpF was downregulated. In summary, outer membrane permeability under N-limited, sugar-rich conditions is largely based on OmpC, whereas porin activity is a complex, highly sensitive function of OmpF, OmpC, and LamB glycoporin expression under different levels of glucose limitation. Indeed, the OmpF level was more responsive to nutrient limitation than to medium osmolarity and suggested a significant additional layer of control over the porin-regulatory network.

摘要

在大肠杆菌的葡萄糖或氮限制恒化器培养物中,营养限制和生长速率对OmpF和OmpC孔蛋白的调控存在差异。转录和翻译的ompF融合蛋白在葡萄糖限制下,当D = 0.3 h-1时表达量出现一个尖锐的峰值,在较低和较高生长速率下表达量较低。在最低盐培养基中,葡萄糖限制下OmpR依赖的ompF转录刺激峰值比营养过剩水平高约20倍,比低渗透压时高3倍。外膜蛋白水平分析以及与孔蛋白突变体的生长竞争实验结果与葡萄糖限制下OmpF作用增强一致,但在氮限制下并非如此。相反,OmpC是氮限制下的主要孔蛋白,但在葡萄糖限制下,当生长速率极低接近饥饿状态且OmpF下调时,其表达量会增加。总之,在氮限制、富含糖的条件下,外膜通透性主要基于OmpC,而孔蛋白活性是在不同葡萄糖限制水平下OmpF、OmpC和LamB糖蛋白表达的复杂且高度敏感的函数。实际上,OmpF水平对营养限制比对培养基渗透压更敏感,这表明在孔蛋白调控网络上存在显著的额外控制层。

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