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Terminal labeling and addition of homopolymer tracts to duplex DNA fragments by terminal deoxynucleotidyl transferase.

机译:末端标记和通过末端脱氧核苷酸转移酶将均聚物添加至双链DNA片段。

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摘要

Terminal deoxynucleotidyl transferase, which requires a single-stranded DNA primer under the usual assay conditions, can be made to accept double-stranded DNA as primer for the addition of either rNMP or dNMP, if Mg+2 ion is replaced by Co+2 ion. The priming efficiency in the presence of (C leads to) CO+2 ion with respect to initial rate tested with 2 single-stranded primer, is 5-6 fols higher than that observed with Mg+2 ion. In the presence of Co+2 ion, the primer specificity is altered so that all forms of duplex DNA molecules can be labeled at their unique 3' -ends regardless of whether such ends are staggered or even. Thus, using ribonucleotide incorporation, we have for the first time employed this reaction for sequence analysis of duplex DNA fragments generated by restriction endonuclease cleavages. Furthermore, by using Co+2 ion, it is possible to add a long homopolymer tract of deoxyribonucleotides to the 3'-terminus of double-stranded DNA. Therefore, without prior treatment with lambda exonuclease to expose the 3' terminus as single-stranded primer, this reaction now permits insertion of homopolymer tails at the 3'-ends of all types of DNA molecules for the purpose of in vitro construction of recombinant DNA.
机译:如果Mg + 2离子被Co + 2离子取代,则可以在常规测定条件下需要单链DNA引物的末端脱氧核苷酸转移酶接受双链DNA作为引物,以添加rNMP或dNMP。 。相对于使用2条单链引物测试的初始速率,在(C导致)CO + 2离子存在下的启动效率比在Mg + 2离子中观察到的启动效率高5-6 fols。在存在Co + 2离子的情况下,引物特异性会发生变化,以便所有形式的双链DNA分子都可以在其独特的3'-末端进行标记,无论这些末端是交错还是均匀。因此,使用核糖核苷酸掺入,我们首次将该反应用于限制性内切核酸酶切割产生的双链DNA片段的序列分析。此外,通过使用Co + 2离子,可以在双链DNA的3'末端添加长的脱氧核糖核苷酸均聚物。因此,无需事先用λ核酸外切酶进行处理以暴露3'末端为单链引物,该反应现在可将均聚物尾部插入所有类型DNA分子的3'末端,以用于体外构建重组DNA 。

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