Gally D L, Leathart J, Blomfield I C
Department of Microbiology, Medical School, University of Newcastle upon Tyne, Tyne and Wear, UK.
Mol Microbiol. 1996 Aug;21(4):725-38. doi: 10.1046/j.1365-2958.1996.311388.x.
The phase variation of type 1 fimbriae in Escherichia coli is associated with the site-specific inversion of a short DNA element. Recombination at fim requires fimB and fimE, and their products are considered to be the fim recombinases. In this study, FimB and FimE were overproduced and extracts containing the proteins were shown to (i) bind to and (ii) invert the fim switch in vitro. Phenanthroline-copper protection of DNA-protein complexes showed that both FimB and FimE bind to half-sites that flank, and overlap with, the left and right inverted repeats (IRL and IRR, respectively) of the fim switch. Alignment of the four half-sites identified a conserved 5'-CA doublet; mutation of these two bases lowers the affinity of binding of both FimB and FimE to the inverted repeats, and greatly diminishes inversion of the fim switch in vivo. The specificity of the fim recombinases observed in vivo (FimB switching in both directions; FimE switching from on-to-off only) was maintained in vitro. Furthermore, the different binding affinities of FimB and FimE for the various half-site combinations suggests that the specificity of FimE could arise, in part, from the low affinity of FimE for IRL (off).
大肠杆菌中1型菌毛的相变与一个短DNA元件的位点特异性倒位有关。fim位点的重组需要fimB和fimE,它们的产物被认为是fim重组酶。在本研究中,FimB和FimE被过量表达,含有这些蛋白质的提取物在体外被证明:(i)能结合并(ii)使fim开关发生倒位。DNA-蛋白质复合物的菲咯啉-铜保护实验表明,FimB和FimE均与fim开关的左、右反向重复序列(分别为IRL和IRR)侧翼且与之重叠的半位点结合。对这四个半位点的比对确定了一个保守的5'-CA双联体;这两个碱基的突变降低了FimB和FimE与反向重复序列的结合亲和力,并极大地减少了体内fim开关的倒位。在体内观察到的fim重组酶的特异性(FimB双向开关;FimE仅从开启到关闭)在体外得以维持。此外,FimB和FimE对各种半位点组合的不同结合亲和力表明,FimE的特异性可能部分源于FimE对IRL(关闭)的低亲和力。