Daborn P J, Waterfield N, Blight M A, Ffrench-Constant R H
Department of Biology and Biochemistry, University of Bath, Bath BA2 7AY, United Kingdom.
J Bacteriol. 2001 Oct;183(20):5834-9. doi: 10.1128/JB.183.20.5834-5839.2001.
During insect infection Photorhabdus luminescens emits light and expresses virulence factors, including insecticidal toxin complexes (Tcs) and an RTX-like metalloprotease (Prt). Using quantitative PCR and protein assays, we describe the expression patterns of these factors both in culture and during insect infection and compare them to the associated bacterial growth curves. In culture, light and active Prt protease are produced in stationary phase. Tca also appears in stationary phase, whereas Tcd is expressed earlier. These patterns seen in a culture flask are strikingly similar to those observed during insect infection. Thus, in an infected insect, bacteria grow exponentially until the time of insect death at approximately 48 h, when both light and the virulence factors Prt protease and Tca are produced. In contrast, Tcd appears much earlier in insect infection. However, at present, the biological significance of this difference in timing of the production of the two toxins in unclear. This is the first documentation of the expression of Tcs and Prt in an insect and highlights the malleability of Photorhabdus as a model system for bacterial infection.
在昆虫感染过程中,发光杆菌会发光并表达毒力因子,包括杀虫毒素复合物(Tcs)和一种RTX样金属蛋白酶(Prt)。我们通过定量PCR和蛋白质分析,描述了这些因子在培养过程中和昆虫感染期间的表达模式,并将它们与相关的细菌生长曲线进行比较。在培养过程中,发光和活性Prt蛋白酶在稳定期产生。Tca也出现在稳定期,而Tcd的表达更早。在培养瓶中观察到的这些模式与昆虫感染期间观察到的模式惊人地相似。因此,在受感染的昆虫中,细菌呈指数生长,直到大约48小时昆虫死亡时,发光以及毒力因子Prt蛋白酶和Tca才产生。相比之下,Tcd在昆虫感染中出现得要早得多。然而,目前这两种毒素产生时间差异的生物学意义尚不清楚。这是首次记录Tcs和Prt在昆虫中的表达,并突出了发光杆菌作为细菌感染模型系统的可塑性。