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携带质粒CloDF13的大肠杆菌产生和排泄绿脓菌素DF13 。

Production and excretion of cloacin DF13 by Escherichia coli harboring plasmid CloDF13.

作者信息

Van Tiel-Menkvled G J, Rezee A, De Graaf F K

出版信息

J Bacteriol. 1979 Nov;140(2):415-23. doi: 10.1128/jb.140.2.415-423.1979.

Abstract

The production and the mechanism of excretion of cloacin DF13 were investigated in noninduced and mitomycin C-induced cell cultures. A mitomycin C concentration was selected which did not cause lysis of cloacinogenic cells, but at the same time induced a maximal production of cloacin DF13. Native cloacin DF13, possessing killing activity, was first released into the cytoplasm. Shortly thereafter, the bacteriocin was transported through the cytoplasmic membrane and accumulated in the periplasm. Finally, cloacin DF13 was excreted into the culture medium. A small amount of cloacin DF13 remained associated with the cell surface. Producing cells did not become permeable for the cytoplasmic enzyme beta-galactosidase. Apparently the cloacin DF13 leaves the producing cells by an excretion process which is not similar to the mechanism proposed for bacterial secretory proteins. The processes of excretion by producing cells and of uptake by susceptible cells were also not identical because mutant cloacin DF13, which was not transported through the outer membrane into susceptible cells, was excreted like the wild-type cloacin DF13. The composition of the culture medium greatly affected production of cloacin DF13. The presence of sugars known to cause catabolite repression not only inhibited the production but also strongly reduced the excretion of cloacin DF13 into the culture medium.

摘要

在未诱导和丝裂霉素C诱导的细胞培养物中研究了绿脓菌素DF13的产生及排泄机制。选择了一种丝裂霉素C浓度,该浓度不会导致产绿脓菌素细胞裂解,但同时能诱导绿脓菌素DF13的最大产量。具有杀伤活性的天然绿脓菌素DF13首先释放到细胞质中。此后不久,细菌素穿过细胞质膜并积累在周质中。最后,绿脓菌素DF13排泄到培养基中。少量绿脓菌素DF13仍与细胞表面结合。产绿脓菌素的细胞对细胞质酶β-半乳糖苷酶不具有通透性。显然,绿脓菌素DF13通过一种排泄过程离开产绿脓菌素的细胞,该过程与细菌分泌蛋白所提出的机制不同。产绿脓菌素的细胞的排泄过程和易感细胞的摄取过程也不相同,因为未通过外膜转运到易感细胞中的突变型绿脓菌素DF13与野生型绿脓菌素DF13一样被排泄。培养基的成分极大地影响绿脓菌素DF13的产生。已知会引起分解代谢物阻遏的糖的存在不仅抑制产量,还会强烈降低绿脓菌素DF13向培养基中的排泄。

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