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在将DNA转入小鼠L细胞的过程中,通过同源DNA片段修复双链DNA断裂。

Repair of double-stranded DNA breaks by homologous DNA fragments during transfer of DNA into mouse L cells.

作者信息

Lin F L, Sperle K, Sternberg N

机构信息

E. I. du Pont de Nemours & Co., Inc., Central Research and Development Department, Wilmington, DE 19880-0328.

出版信息

Mol Cell Biol. 1990 Jan;10(1):113-9. doi: 10.1128/mcb.10.1.113-119.1990.

Abstract

To test the validity of various models for recombination between extrachromosomal DNAs in mammalian cells, we measured recombination between a plasmid containing a herpesvirus thymidine kinase (tk) gene with an internal BamHI linker insertion mutation (ptkB8) and a tk gene deleted at both ends (tk delta 3' delta 5'). The two DNAs shared 885 base pairs of perfect tk homology except for the interruption at the linker insertion site. Recombination events that restored the mutated insertion site to wild type were monitored by the generation of hypoxanthine-aminopterine-thymidine-resistant colonies after cotransformation of Ltk- cells with the two DNAs. We found that cleavage of the ptkB8 DNA at the linker insertion site was essential for gene restoration. If the tk delta 3' delta 5' DNA was ligated into mp10 vector DNA, then recombination with the cleaved ptkB8 DNA was inefficient. In contrast, if it was excised from that vector by cleavage at flanking restriction sites, then recombination was stimulated about 150-fold. Using restriction site polymorphisms, we showed that most of the recombination events leading to restoration of the tk gene with the excised tk delta 3' delta 5' fragment involved three double-strand duplexes: two ptkB8 DNAs and one tk delta 3' delta 5' fragment. These results are much more readily explained by the single-strand annealing model of recombination than by the double-strand break repair model, and they suggest that the deficiency of the latter pathway for extrachromosomal mammalian recombination may be due, at least in part, to the obligate tripartite nature of the reaction. Finally, we measured the effect of DNA homology on the efficiency of the ptkB8-tk delta 3' delta 5' reaction. Our results showed a near-linear relationship between the efficiency of recombination and the amount of homology flanking either side of the linker insertion site. Moreover, we could detect thymidine kinase-positive transformants with as little as 10 base pairs of homology.

摘要

为了测试哺乳动物细胞中染色体外DNA之间各种重组模型的有效性,我们测量了一个含有疱疹病毒胸苷激酶(tk)基因且内部插入BamHI接头突变的质粒(ptkB8)与一个两端缺失的tk基因(tk delta 3' delta 5')之间的重组。除了接头插入位点的中断外,这两个DNA共有885个碱基对的完全tk同源性。通过将Ltk-细胞与这两种DNA共转化后产生次黄嘌呤 - 氨基蝶呤 - 胸腺嘧啶抗性菌落,监测使突变插入位点恢复为野生型的重组事件。我们发现ptkB8 DNA在接头插入位点的切割对于基因恢复至关重要。如果将tk delta 3' delta 5' DNA连接到mp10载体DNA中,那么与切割后的ptkB8 DNA的重组效率很低。相反,如果通过侧翼限制性位点的切割将其从该载体中切除,那么重组会被刺激约150倍。利用限制性位点多态性,我们表明,大多数导致切除的tk delta 3' delta 5'片段恢复tk基因的重组事件涉及三个双链双链体:两个ptkB8 DNA和一个tk delta 3' delta 5'片段。这些结果用重组的单链退火模型比用双链断裂修复模型更容易解释,并且它们表明后一种途径在染色体外哺乳动物重组中的缺陷可能至少部分归因于反应的必然三方性质。最后,我们测量了DNA同源性对ptkB8 - tk delta 3' delta 5'反应效率的影响。我们的结果表明,重组效率与接头插入位点两侧的同源性数量之间存在近乎线性的关系。此外,我们可以检测到仅有10个碱基对同源性的胸苷激酶阳性转化体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c597/360718/da83ebdf0622/molcellb00037-0136-a.jpg

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