Yokochi T, Kusano K, Kobayashi I
Department of Molecular Biology, University of Tokyo, Japan.
Genetics. 1995 Jan;139(1):5-17. doi: 10.1093/genetics/139.1.5.
The double-strand break repair models for homologous recombination propose that a double-strand break in a duplex DNA segment is repaired by gene conversion copying a homologous DNA segment. This is a type of conservative recombination, or two-progeny recombination, which generates two duplex DNA segments from two duplex DNA segments. Transformation with a plasmid carrying a double-strand gap and an intact homologous DNA segment resulted in products expected from such conservative (two-progeny) repair in Escherichia coli cells with active E. coli RecE pathway (recBC sbcA) or with active bacteriophage lambda Red pathway. Apparently conservative double-strand break repair, however, might result from successive events of nonconservative recombination, or one-progeny recombination, which generates only one recombinant duplex DNA segment from two segments, involving multiple plasmid molecules. Contribution of such intermolecular recombination was evaluated by transformation with a mixture of two isogenic parental plasmids marked with a restriction site polymorphism. Most of the gap repair products were from intramolecular and, therefore, conservative (two-progeny) reaction under the conditions chosen. Most were conservative even in the absence of RecA protein. The double-strand gap repair reaction was not affected by inversion of the unidirectional replication origin on the plasmid. These results demonstrate the presence of the conservative (two-progeny) double-strand break repair mechanism. These experiments do not rule out the occurrence of nonconservative (one-progeny) recombination since we set up experimental conditions that should favor detection of conservative (two-progeny) recombination.
同源重组的双链断裂修复模型提出,双链DNA片段中的双链断裂通过复制同源DNA片段的基因转换来修复。这是一种保守重组类型,即双子代重组,它从两个双链DNA片段产生两个双链DNA片段。用携带双链缺口和完整同源DNA片段的质粒进行转化,在具有活性大肠杆菌RecE途径(recBC sbcA)或活性噬菌体λ Red途径的大肠杆菌细胞中产生了这种保守(双子代)修复预期的产物。然而,明显的保守双链断裂修复可能是由非保守重组的连续事件导致的,即单子代重组,它从两个片段仅产生一个重组双链DNA片段,涉及多个质粒分子。通过用两个标记有限制性位点多态性的同基因亲本质粒混合物进行转化来评估这种分子间重组的贡献。在所选择的条件下,大多数缺口修复产物来自分子内,因此是保守(双子代)反应。即使在没有RecA蛋白的情况下,大多数也是保守的。双链缺口修复反应不受质粒上单向复制起点倒置的影响。这些结果证明了保守(双子代)双链断裂修复机制的存在。由于我们设置了有利于检测保守(双子代)重组的实验条件,这些实验并不排除非保守(单子代)重组的发生。