生物
基因组
非同源性末端接合
DNA修复
遗传学
同源重组
计算生物学
基因组编辑
DNA
核酸内切酶
基因组工程
同源定向修复
基因
同源染色体
限制性酶
DNA错配修复
标识
DOI:10.1016/0168-9525(96)10019-6
摘要
DNA double-strand breaks (DSBs) pose a threat to the genomic integrity of a cell. The failure to heal a break or the inappropriate repair of a break can result in the loss of genetic information and other potentially deleterious consequences, such as chromosomal translocations. Recent developments using rare-cutting endonucleases have allowed investigators to introduce one or a few DSBs into complex genomes. Such studies have begun to elucidate the complex mechanisms of nonhomologous and homologous repair used by mammalian cells to repair these lesions. A key finding is that gene targeting is stimulated two to three orders of magnitude by a DSB at the target locus. Thus, the use of rare-cutting endonucleases and the co-opting of cellular repair mechanisms might provide scientists with another tool for engineering changes into genomes.
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