Mizuuchi Michiyo, Rice Phoebe A, Wardle Simon J, Haniford David B, Mizuuchi Kiyoshi
Laboratory of Molecular Biology, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 2007 Sep 11;104(37):14622-7. doi: 10.1073/pnas.0706556104. Epub 2007 Sep 4.
The multiple steps of DNA transposition take place within a large complex called the transpososome, in which a pair of transposon DNA ends are synapsed by a multimer of the transposase protein. The final step, a DNA strand transfer reaction that joins the transposon ends to the target DNA strands, entails no net change in the number of high-energy chemical bonds. Physiology demands that, despite remaining stably associated with the transpososome, the strand transfer products undergo neither the reverse reaction nor any further cleavage reactions. Accordingly, when the Mu or Tn10 strand transfer complex was produced in vitro through transposase-catalyzed reaction steps, reverse reactions were undetectable. In contrast, when the Mu or Tn10 strand transfer complexes were assembled from DNA already having the structure of the strand transfer product, we detected a reaction that resembled reversal of target DNA strand transfer. The stereoselectivity of phosphorothioate-containing substrates indicated that this reaction proceeds as the pseudoreversal of the normal target DNA strand transfer step. Comparison of the reactivity of closely related Mu substrate DNA structures indicated that the configuration of the flanking DNA outside of the transposon sequence plays a key role in preventing the transposon end cleavage reaction after the strand transfer step.
DNA转座的多个步骤发生在一个称为转座体的大型复合物中,其中一对转座子DNA末端通过转座酶蛋白的多聚体进行突触连接。最后一步是将转座子末端与靶DNA链连接的DNA链转移反应,高能化学键的数量没有净变化。生理学要求,尽管转座子末端与转座体保持稳定结合,但链转移产物既不发生逆反应,也不发生任何进一步的切割反应。因此,当通过转座酶催化的反应步骤在体外产生Mu或Tn10链转移复合物时,未检测到逆反应。相反,当从已经具有链转移产物结构的DNA组装Mu或Tn10链转移复合物时,我们检测到了一种类似于靶DNA链转移逆转的反应。含硫代磷酸酯底物的立体选择性表明,该反应作为正常靶DNA链转移步骤的假逆转进行。对密切相关的Mu底物DNA结构的反应性比较表明,转座子序列外的侧翼DNA的构型在防止链转移步骤后的转座子末端切割反应中起关键作用。