Peeters B P, de Boer J H, Bron S, Venema G
Department of Genetics, University of Groningen, Haren, The Netherlands.
Mol Gen Genet. 1988 Jun;212(3):450-8. doi: 10.1007/BF00330849.
Using precise excision as a model system, we have quantified the effect of direct repeats, inverted repeats and the size of the spacer between the repeats in the process of deletion formation in Bacillus subtilis. Both in the presence and absence of inverted repeats, the frequency of precise excision was strongly dependent on the direct repeat length. By increasing the direct repeat length from 9 bp to 18 and 27 bp, the precise excision frequency was raised by 3 and 4 orders of magnitude, respectively. In addition, irrespective of the direct repeat length, the presence of flanking inverted repeats enhanced the excision frequency by 3 orders of magnitude. Varying the inverted repeat length and the spacer size over a wide range did not significantly affect the excision frequencies. These results fit well into a model for deletion formation by slipped mispairing during replication of single-stranded plasmid DNA.
以精确切除作为模型系统,我们已经量化了直接重复序列、反向重复序列以及重复序列之间间隔区大小对枯草芽孢杆菌中缺失形成过程的影响。无论有无反向重复序列,精确切除的频率都强烈依赖于直接重复序列的长度。将直接重复序列的长度从9个碱基对增加到18个和27个碱基对时,精确切除频率分别提高了3个和4个数量级。此外,无论直接重复序列的长度如何,侧翼反向重复序列的存在使切除频率提高了3个数量级。在很宽的范围内改变反向重复序列的长度和间隔区大小,对切除频率没有显著影响。这些结果与单链质粒DNA复制过程中通过滑动错配形成缺失的模型非常吻合。