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首页> 外文期刊>Molecular Microbiology >Xis protein of the conjugative transposon Tn916 plays dual opposing roles in transposon excision.
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Xis protein of the conjugative transposon Tn916 plays dual opposing roles in transposon excision.

机译:接合转座子Tn916的Xis蛋白在转座子切除中起双重相反的作用。

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摘要

The binding of Tn916 Xis protein to its specific sites at the left and right ends of the transposon was compared using gel mobility shift assays. Xis formed two complexes with different electrophoretic mobilities with both right and left transposon ends. Complex II, with a reduced mobility, formed at higher concentrations of Xis and appeared at an eightfold lower Xis concentration with a DNA fragment from the left end of the transposon rather than with a DNA fragment from the right end of the transposon, indicating that Xis has a higher affinity for the left end of the transposon. Methylation interference was used to identify two G residues that were essential for binding of Xis to the right end of Tn916. Mutations in these residues reduced binding of Xis. In an in vivo assay, these mutations increased the frequency of excision of a minitransposon from a plasmid, indicating that binding of Xis at the right end of Tn916 inhibits transposon excision. A similar mutation in the specific binding site for Xis at the left end of the transposon did not reduce the affinity of Xis for the site but did perturb binding sufficiently to alter the pattern of protection by Xis from nuclease cleavage. This mutation reduced the level of transposon excision, indicating that binding of Xis to the left end of Tn916 is required for transposon excision. Thus, Xis is required for transposon excision and, at elevated concentrations, can also regulate this process.
机译:使用凝胶迁移率移动分析法比较了Tn916 Xis蛋白与其转座子左右端特定位点的结合。 Xis形成了两个具有不同电泳迁移率的复合物,其左右转座子均端。迁移率降低的复合物II在较高的Xis浓度下形成,在较低的Xis浓度下出现,其转座子左端的DNA片段而不是转座子右端的DNA片段,表明Xis对转座子的左端具有更高的亲和力。甲基化干扰用于鉴定两个Xi绑定到Tn916的右端必不可少的G残基。这些残基中的突变降低了Xis的结合。在体内测定中,这些突变增加了从质粒切除小转座子的频率,表明在Tn916右端的Xis结合抑制了转座子的切除。转座子左端Xis特异性结合位点的类似突变不会降低Xis对位点的亲和力,但会扰动结合,足以改变Xis对核酸酶切割的保护方式。此突变降低了转座子切除的水平,表明转座子切除需要将Xis与Tn916的左端结合。因此,Xis是转座子切除所必需的,并且在升高的浓度下,也可以调节这个过程。

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