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fimB和fimE在与大肠杆菌1型菌毛相变相关的位点特异性DNA倒位中的作用。

Roles of fimB and fimE in site-specific DNA inversion associated with phase variation of type 1 fimbriae in Escherichia coli.

作者信息

McClain M S, Blomfield I C, Eisenstein B I

机构信息

Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor 48109-0620.

出版信息

J Bacteriol. 1991 Sep;173(17):5308-14. doi: 10.1128/jb.173.17.5308-5314.1991.

Abstract

Evidence obtained with an improved in vivo assay of fimbrial phase variation in Escherichia coli supported a revised understanding of the roles of fimB and fimE in the site-specific DNA rearrangement with which they are associated. A previously proposed model argued that fimB and fimE play antagonistic, unidirectional roles in regulating the orientation of the invertible DNA element located immediately upstream of fimA, the gene encoding the major subunit of type 1 fimbriae. This conclusion, though, is based on an in vivo DNA inversion assay using recombinant plasmid substrates under conditions that, among other things, were incapable of detecting recombination of the fim invertible element from the on to the off orientation. Using a modified system that overcome this and several additional technical problems, we confirmed that fimB acts independently of fimE on the invertible element and that the additional presence of fimE results in the preferential rearrangement of the element to the off orientation. It is now demonstrated that fimE can act in the absence of fimB in this recombination to promote inversion primarily from on to off. In contrast to the previous studies, the effect of fimB on a substrate carrying the invertible element in the on orientation could be examined. It was found that fimB mediates DNA inversion from on to off, as well as from off to on, and that, contrary to prior interpretations, the fimB-associated inversion occurs with only minimal orientational preference to the on phase.

摘要

通过改进的大肠杆菌菌毛相变体内检测方法获得的证据,支持了对fimB和fimE在与其相关的位点特异性DNA重排中所起作用的修正理解。先前提出的模型认为,fimB和fimE在调节位于编码1型菌毛主要亚基的fimA基因上游的可逆DNA元件的方向上发挥拮抗、单向作用。然而,这一结论是基于在体内DNA倒位检测中使用重组质粒底物,而这些条件在其他方面无法检测到fim可逆元件从开启到关闭方向的重组。使用一个改进的系统克服了这一问题以及其他几个技术问题,我们证实fimB在可逆元件上独立于fimE起作用,并且fimE的额外存在会导致该元件优先重排到关闭方向。现在已经证明,在这种重组中fimE可以在没有fimB的情况下起作用,主要促进从开启到关闭的倒位。与先前的研究不同,可以检测fimB对携带处于开启方向的可逆元件的底物的影响。结果发现,fimB介导DNA从开启到关闭以及从关闭到开启的倒位,并且与先前的解释相反,与fimB相关的倒位对开启阶段的方向偏好极小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e12d/208240/73632503d3f5/jbacter00107-0078-a.jpg

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