Lee J, Jayaram M
Department of Microbiology, University of Texas at Austin 78712.
J Biol Chem. 1995 Feb 24;270(8):4042-52. doi: 10.1074/jbc.270.8.4042.
Absolute homology between partner substrates within the strand exchange region is an essential requirement for recombination mediated by the yeast site-specific recombinase Flp. Using combinations of specially designed half- and full-site Flp substrates, we demonstrate that the strand joining step of recombination is exquisitely sensitive to spacer homology. At each exchange point, 2-3 spacer nucleotides adjacent to the nick within the cleaved strand of one substrate must base pair with the corresponding segment of the un-nicked strand from the second substrate for efficient strand joining in the recombinant mode. In accordance with the "cis-activation/trans-nucleophilic attack" model for each of the two transesterification steps of Flp recombination (strand cleavage and strand joining), we propose that the limited strand pairing orients the DNA-nucleophile (5'-hydroxyl) for attack on its target diester (3'-phosphotyrosyl-Flp). During one round of recombination, 4-6 terminal base pairs of the spacer (2-3 base pairs at each spacer end) must unpair, following strand cleavage, within a DNA substrate and pair with the partner substrate prior to strand union. In this model, the extent of branch migration of the covalently closed Holliday intermediate is limited to the central core of the spacer. The templated positioning of reactive nucleic acid groups (which is central to the model) may be utilized by other recombination systems and by RNA splicing reactions.
酵母位点特异性重组酶Flp介导的重组过程中,链交换区域内伙伴底物之间的绝对同源性是一个基本要求。通过使用特别设计的半位点和全位点Flp底物组合,我们证明重组的链连接步骤对间隔区同源性极为敏感。在每个交换点,一个底物切割链上切口相邻的2 - 3个间隔核苷酸必须与第二个底物未切割链的相应片段碱基配对,以便以重组模式高效进行链连接。根据Flp重组两个转酯步骤(链切割和链连接)各自的“顺式激活/反式亲核攻击”模型,我们提出有限的链配对使DNA亲核试剂(5'-羟基)定向攻击其靶标二酯(3'-磷酸酪氨酸-Flp)。在一轮重组过程中,间隔区的4 - 6个末端碱基对(每个间隔区末端2 - 3个碱基对)在DNA底物中链切割后必须解链,并在链结合之前与伙伴底物配对。在这个模型中,共价闭合的霍利迪中间体的分支迁移范围限于间隔区的中央核心。反应性核酸基团的模板定位(这是该模型的核心)可能被其他重组系统和RNA剪接反应所利用。