Royer H D, Hollenberg C P
Mol Gen Genet. 1977 Feb 15;150(3):271-84. doi: 10.1007/BF00268126.
The non-tandem inverted duplication in the 2-mum DNA of Saccharomyces cerevisiae has a length of 0.19 mum and is located asymmetrically along the molecule. The majority of the dumb-bell structures that are formed upon denaturation and self-annealing of the 2-mum monomer consists of the renatured inverted duplication sequences as double stranded stem and two single stranded loops of 0.67mum+/-0.06 mum (S-loop) and 0.86 mum+/-0.05 mum (L-loop) length. Two additional size classes which comprised 5-10% of the measured molecules had contour lengths of around 1.7 mum and 2.1 mum. The smaller dumb-bells contained two S-loops and the larger dumb-bells contained two L-loops as was shown by heteroduplex mapping with an HindIII fragment from the L-loop. Two models which assume illegitimate or site specific recombination, are presented to explain the generation of double S-loop and double L-loop molecules. At least part of the 4-mum and 6-mum circular molecules present in the yeast supercoiled DNA fraction are shown to be dimers and trimers of 2-mum monomers, but often with inverted loop segments most probably due to intramolecular recombination between sequences of the inverted duplication.
酿酒酵母2μm DNA中的非串联反向重复序列长度为0.19μm,沿分子不对称分布。2μm单体变性和自退火后形成的大多数哑铃状结构由重新退火的反向重复序列作为双链茎以及两个单链环组成,其长度分别为0.67μm±0.06μm(S环)和0.86μm±0.05μm(L环)。另外两个尺寸类别占测量分子的5 - 10%,其轮廓长度约为1.7μm和2.1μm。如用来自L环的HindIII片段进行异源双链图谱分析所示,较小的哑铃状结构包含两个S环,较大的哑铃状结构包含两个L环。提出了两个假设非法或位点特异性重组的模型,以解释双S环和双L环分子的产生。酵母超螺旋DNA组分中存在的至少部分4μm和6μm环状分子被证明是2μm单体的二聚体和三聚体,但通常带有反向环段,这很可能是由于反向重复序列之间的分子内重组所致。