Bell L, Byers B
Proc Natl Acad Sci U S A. 1979 Jul;76(7):3445-9. doi: 10.1073/pnas.76.7.3445.
The crossed strand-exchange form (Holliday structure, half chiasma) has been predicted as an intermediate in the genetic recombination of eukaryotes. We report here the detection of this form in the yeast plasmid, 2-micron DNA, isolated during meiosis. Physical mapping has previously suggested that two forms of 2-micron DNA arise because of recombination between inverted repeat regions. After appropriate digestion with restriction endonuclease, a crossed strand-exchange form intermediate in this recombination would yield an X-shaped form resistant to loss by branch migration because of nonhomology in sequences flanking the region of homology. We first generated this X-shaped form artificially by reannealing melted restriction fragments of 2-micron DNA. This enabled us to develop a procedure for the physical separation of the X-shaped form by agarose gel electrophoresis. We then used this electrophoretic procedure to isolate a naturally occurring form of identical structure from the 2-micron DNA of meiotic cells. Electron microscopy demonstrated that the exchange junction had the expected configuration of strands and indicated that the junction occurred within the region of homology.
交叉链交换形式(霍利迪结构,半交叉)被预测为真核生物基因重组过程中的一种中间体。我们在此报告在减数分裂期间分离出的酵母质粒2-微米DNA中检测到这种形式。物理图谱分析先前表明,由于反向重复区域之间的重组,产生了两种形式的2-微米DNA。用限制性内切酶进行适当消化后,这种重组中的交叉链交换形式中间体将产生一种X形形式,由于同源区域侧翼序列的非同源性,其对分支迁移导致的丢失具有抗性。我们首先通过重新退火2-微米DNA的限制性酶切片段人工生成这种X形形式。这使我们能够开发出一种通过琼脂糖凝胶电泳对X形形式进行物理分离的方法。然后我们使用这种电泳方法从减数分裂细胞的2-微米DNA中分离出一种具有相同结构的天然形式。电子显微镜显示交换连接点具有预期的链构型,并表明连接点发生在同源区域内。