Lee S, Cavallo L, Griffith J
Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, North Carolina 27599-7295, USA.
J Biol Chem. 1997 Mar 14;272(11):7532-9. doi: 10.1074/jbc.272.11.7532.
Holliday junctions in DNA are generated as a product of homologous recombination events. To test the hypothesis that human p53 may bind to Holliday junctions, synthetic junctions with four approximately 75-base pair (Hol75) or approximately 565-base pair (Hol565) arms were generated. As seen by electron microscopy, under conditions in which 50-61% of the Hol565 DNAs were bound by p53, 80-96% of the p53 was located specifically at the junction with, in the latter case, only 4% of the p53 visualized at the DNA ends or along the arms. Given the large number of potential binding sites, this represents very high specificity for the junctions. Gel retardation assays using the Hol75 DNA confirm these observations, and indicate that the tight junction complexes have a half-life of greater than 4 h. The binding of p53 to three-way junctions is severalfold less than to four-way junctions. Addition of p53 greatly increases the rate of resolution of the Hol75 DNA by T4 endonuclease VII and T7 endonuclease I, two enzymes known to cleave such junctions. This latter finding further confirms the interaction of p53 with Holliday junctions and suggests that p53 binding facilitates their resolution in vivo.
DNA中的霍利迪连接体是同源重组事件的产物。为了验证人类p53可能与霍利迪连接体结合这一假说,制备了带有四条约75个碱基对(Hol75)或约565个碱基对(Hol565)臂的合成连接体。通过电子显微镜观察,在50 - 61%的Hol565 DNA与p53结合的条件下,80 - 96%的p53特异性地位于连接体处,在后一种情况下,只有4%的p53出现在DNA末端或沿着臂部。考虑到潜在结合位点的数量众多,这表明对连接体具有非常高的特异性。使用Hol75 DNA进行的凝胶阻滞试验证实了这些观察结果,并表明紧密的连接体复合物半衰期大于4小时。p53与三向连接体的结合比与四向连接体的结合少几倍。添加p53极大地提高了T4内切核酸酶VII和T7内切核酸酶I对Hol75 DNA的切割速率,这两种酶已知可切割此类连接体。后一发现进一步证实了p53与霍利迪连接体的相互作用,并表明p53结合有助于其在体内的切割。