Savilahti H, Rice P A, Mizuuchi K
Laboratory of Molecular Biology, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
EMBO J. 1995 Oct 2;14(19):4893-903. doi: 10.1002/j.1460-2075.1995.tb00170.x.
The two chemical steps of phage Mu transpositional recombination, donor DNA cleavage and strand transfer, take place within higher order protein-DNA complexes called transpososomes. At the core of these complexes is a tetramer of MuA (the transposase), bound to the two ends of the Mu genome. While transpososome assembly normally requires a number of cofactors, under certain conditions only MuA and a short DNA fragment are required. DNA requirements for this process, as well as the stability and activity of the ensuing complexes, were established. The divalent cation normally required for assembly of the stable complex could be omitted if the substrate was prenicked, if the flanking DNA was very short or if the two flanking strands were non-complementary. The presence of a single nucleotide beyond the Mu genome end on the non-cut strand was critical for transpososome stability. Donor cleavage additionally required at least two flanking nucleotides on the strand to be cleaved. The flanking DNA double helix was destabilized, implying distortion of the DNA near the active site. Although donor cleavage required Mg2+, strand transfer took place in the presence of Ca2+ as well, suggesting a conformational difference in the active site for the two chemical steps.
噬菌体Mu转座重组的两个化学步骤,即供体DNA切割和链转移,发生在称为转座体的高阶蛋白质-DNA复合物中。这些复合物的核心是MuA(转座酶)四聚体,它与Mu基因组的两端结合。虽然转座体组装通常需要多种辅助因子,但在某些条件下,仅需要MuA和一个短DNA片段。确定了该过程的DNA需求以及后续复合物的稳定性和活性。如果底物预先切口、侧翼DNA非常短或两条侧翼链不互补,则可以省略稳定复合物组装通常所需的二价阳离子。非切割链上Mu基因组末端之外存在单个核苷酸对于转座体稳定性至关重要。供体切割还需要待切割链上至少两个侧翼核苷酸。侧翼DNA双螺旋不稳定,这意味着活性位点附近的DNA发生了扭曲。虽然供体切割需要Mg2+,但链转移也可以在Ca2+存在的情况下发生,这表明两个化学步骤的活性位点存在构象差异。