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Site-specific mutagenesis method which completely excludes wild-type DNA from the transformants.

机译:位点特异性诱变方法可完全从转化体中排除野生型DNA。

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摘要

A highly efficient site-specific mutagenesis method has been devised to exclude wild-type DNA from incorporation into the transformed cells. Two complementary oligonucleotides, corresponding to a target sequence of a DNA molecule and containing an insertion mutation which created an endonuclease restriction site, were synthesized. By using the wild-type DNA molecule flanked by two restriction sites on each side of the target region as a template, the two oligonucleotide primers were extended, enriched, and isolated. The extended products, in turn, were used as templates in a polymerase chain reaction to obtain a mutagenized double-stranded DNA fragment which was conveniently cloned into plasmids by using the flanking restriction sites. Escherichia coli cells transformed by these plasmids were subject to large-scale analysis. One hundred percent of the transformants examined by colony hybridization, restriction enzyme analysis, and DNA sequencing were found to contain the mutant DNA sequence.
机译:已经设计出一种高效的位点特异性诱变方法,以将野生型DNA从掺入转化细胞中排除。合成了两个互补的寡核苷酸,它们对应于DNA分子的靶序列,并含有产生核酸内切酶限制性位点的插入突变。通过将侧翼位于靶区域两侧的两个限制性酶切位点的野生型DNA分子用作模板,可以延伸,富集和分离两个寡核苷酸引物。延伸的产物又被用作聚合酶链反应中的模板以获得诱变的双链DNA片段,其可通过使用侧翼限制性位点方便地克隆到质粒中。将通过这些质粒转化的大肠杆菌细胞进行大规模分析。通过菌落杂交,限制性内切酶分析和DNA测序检查发现,百分之一百的转化子包含突变的DNA序列。

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