Marzari R, Sblattero D, Righi M, Bradbury A
International School for Advanced Studies (SISSA), Trieste, Italy.
Gene. 1997 Jan 31;185(1):27-33. doi: 10.1016/s0378-1119(96)00623-3.
fd and IKe are two similar filamentous phage which infect their hosts by means of pili found on the host membrane: fd infects bacteria bearing F pili, whereas IKe infects bacteria bearing N or I pili. Infection is mediated by the gene 3 protein (g3p), which of the nine proteins found in both phage is the most diverse. Previous attempts to incorporate g3p from one phage into the other by complementation have been unsuccessful [Bross et al. (1988) J. Gen. Microbiol. 134, 461-471]. Here we have grafted different parts of IKe g3p to the end of fd g3p and so augmented the host range of fd phage. We show that phage bearing such chimeric g3p are able to infect bacteria bearing both N and F pili providing they contain at least the receptor domain of IKe g3p, the infection of N bearing bacteria occurring at a level 70,000 times greater than background. This level of infection can be increased tenfold by including the glycine-rich domain as well. Addition of the penetration domain does not improve the level of infection above that of the receptor domain alone, indicating that the fd penetration domain is functional in the infection of bacteria bearing either N or F pili. Similarly derived fd phagemid also show increased infection of bacteria bearing N pili, albeit at much lower levels, suggesting that efficient infection requires more than one functional g3p on the surface of the phage.
fd噬菌体和IKe噬菌体是两种相似的丝状噬菌体,它们通过宿主细胞膜上的菌毛感染宿主:fd噬菌体感染带有F菌毛的细菌,而IKe噬菌体感染带有N菌毛或I菌毛的细菌。感染由基因3蛋白(g3p)介导,该蛋白是这两种噬菌体中发现的九种蛋白中最多样化的。先前通过互补将一种噬菌体的g3p整合到另一种噬菌体中的尝试均未成功[布罗斯等人(1988年)《普通微生物学杂志》134卷,461 - 471页]。在此,我们将IKe g3p的不同部分嫁接到fd g3p的末端,从而扩大了fd噬菌体的宿主范围。我们表明,携带这种嵌合g3p的噬菌体能够感染带有N菌毛和F菌毛的细菌,前提是它们至少包含IKe g3p的受体结构域,感染带有N菌毛的细菌的水平比背景高70000倍。通过加入富含甘氨酸的结构域,这种感染水平还可以提高十倍。加入穿透结构域并不能使感染水平高于仅含受体结构域时的水平,这表明fd穿透结构域在感染带有N菌毛或F菌毛的细菌时具有功能。类似衍生的fd噬菌粒也显示出对带有N菌毛的细菌的感染增加,尽管水平要低得多,这表明高效感染需要噬菌体表面有不止一个功能性g3p。