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首页> 外文期刊>Journal of Molecular Biology >Attenuating Functions of the C Terminus of lambda Integrase.
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Attenuating Functions of the C Terminus of lambda Integrase.

机译:Lambda Integrase的C总站的衰减功能。

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The tyrosine family site-specific recombinases, in contrast to the related type I topoisomerases, which act as monomers on a single DNA molecule, rely on multi-protein complexes to synapse partner DNAs and coordinate two sequential strand exchanges involving four nicking-closing reactions. Here, we analyze three mutants of the catalytic domain of lambda integrase (Int), A241V, I353M and W350ter that are defective for normal recombination, but possess increased topoisomerase activity. The mutant enzymes can carry out individual DNA strand exchanges using truncated substrates or Holliday junctions, and they show more DNA-cleavage activity than wild-type Int on isolated att sites. Structural modeling predicts that the substituted residues may destabilize interactions between the C-terminal beta-strand (beta7) of Int and the core of the protein. The cleavage-competent state of Int requires the repositioning of the nucleophile (Y342) located on beta6 and the catalyst K235 located on the flexible beta2-beta3 loop, relative to their positions in a crystal structure of the inactive conformation. We propose that the anchoring of beta7 against the protein core restrains the movement of Tyr342 and/or Lys235, causing an attenuation of cleavage activity in most contexts. Within a bona fide recombination complex, the release of strand beta7 would allow Tyr342 and Lys235 to assume catalytically active conformations in coordination with other Int protomers in the complex. The loss of beta7 packing by misalignment or truncation in the mutant proteins described here causes a loss of regulated activity, thereby favoring DNA cleavage activity in monomeric complexes and forfeiting the coordination of strand-exchange necessary for efficient recombination.
机译:酪氨酸家族位点特异性重组酶与相关的I型拓扑异构酶相反,后者在单个DNA分子上充当单体,依靠多蛋白复合物突触伴侣DNA并协调涉及四个切口闭合反应的两个顺序链交换。在这里,我们分析了λ整合酶(Int),A241V,I353M和W350ter催化结构域的三个突变体,这些突变体对于正常重组是有缺陷的,但具有增加的拓扑异构酶活性。突变酶可以使用截短的底物或霍利迪连接进行单独的DNA链交换,并且在分离的att位点上显示出比野生型Int更高的DNA切割活性。结构建模预测,取代的残基可能会破坏Int的C末端β链(beta7)与蛋白质核心之间的相互作用。 Int的裂解能力状态要求重新定位位于beta6上的亲核试剂(Y342)和位于柔性beta2-beta3环上的催化剂K235,相对于它们在非活性构象的晶体结构中的位置。我们建议针对蛋白质核心的beta7锚定抑制Tyr342和/或Lys235的运动,在大多数情况下导致切割活性的减弱。在真正的重组复合物中,β7链的释放将使Tyr342和Lys235与复合物中的其他Int启动子协同发挥催化活性构象。在此处描述的突变蛋白中,由于错位或截短而导致β7堆积丢失,导致调节活性丧失,从而有利于单体复合物中的DNA裂解活性,并丧失了有效重组所必需的链交换配位。

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