van Randen J, Wiersma K, Venema G
Mol Gen Genet. 1982;188(3):499-507. doi: 10.1007/BF00330056.
Lysates obtained shortly after entry of transforming DNA to Bacillus subtilis contain donor-recipient DNA complexes, in which the donor moiety is associated with the recipient DNA in an unstable way. The complexes could be artificially stabilized by crosslinking with 4,5',8-trimethylpsoralen. The unstable complexes dissociated upon helix-destabilizing treatments, such as heating at 70 degrees C, and CsCl gradient centrifugation at pH 11.2, but remained stable during CsCl gradient centrifugation at pH 10. Donor-recipient DNA complexes were not formed after entry of heterologous pUB110 DNA. These observations suggest that base-pairing is involved in the unstable association. The donor moiety of the unstable complexes was completely, or almost completely, digestible by nuclease S1, indicating that the donor and recipient base-sequences are only paired over very short distances. The unstable donor-recipient DNA complexes are true recombination intermediates because (i) strain 7G224 (recE4) was impaired in the formation of the unstable complexes, and (ii) the unstable complexes were rapidly converted to stable complexes in recombination proficient strains, whereas their conversion was delayed in the recombination deficient strain 7G84. Unstable complexes were also formed with Escherichia coli donor DNA, but to a lesser extent. Apparently a limited degree of base-sequence homology is sufficient to initiate recombination.
将转化DNA导入枯草芽孢杆菌后不久获得的裂解物中含有供体-受体DNA复合物,其中供体部分以不稳定的方式与受体DNA结合。这些复合物可以通过与4,5',8-三甲基补骨脂素交联而人工稳定。不稳定的复合物在螺旋解稳定处理(如70℃加热和pH 11.2条件下的CsCl梯度离心)时会解离,但在pH 10条件下的CsCl梯度离心过程中保持稳定。导入异源pUB110 DNA后未形成供体-受体DNA复合物。这些观察结果表明碱基配对参与了这种不稳定的结合。不稳定复合物的供体部分可被核酸酶S1完全或几乎完全消化,这表明供体和受体的碱基序列仅在很短的距离内配对。不稳定的供体-受体DNA复合物是真正的重组中间体,因为(i)菌株7G224(recE4)在不稳定复合物的形成上存在缺陷,(ii)在重组能力强的菌株中,不稳定复合物会迅速转化为稳定复合物,而在重组缺陷菌株7G84中其转化则延迟。与大肠杆菌供体DNA也能形成不稳定复合物,但程度较小。显然,有限程度的碱基序列同源性足以启动重组。