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In vitro expansion of GGC:GCC repeats: identification of the preferred strand of expansion.

机译:GGC:GCC的体外扩增重复:鉴定优选的扩增链。

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摘要

The human fragile-X syndrome, a major cause of inherited mental retardation, is associated with expansion of the trinucleotide repeat GGC:GCC. Repetitive sequences in DNA are subject to slippage during catalysis by DNA polymerases. We characterized the extent of slippage of synthetic GGC:GCC repeats by various DNA polymerases: Taq DNA polymerase, Klenow fragment of DNA polymerase I, DNA Sequence, DNA polymerase-alpha and polymerase-beta, as well as HIV reverse transcriptase. All of these enzymes were found to expand GGC:GCC repeats, with the most extensive expansion exhibited by Taq DNA polymerase. Starting with a template and primer, each 15 nucleotides (nt) in length, the product of one round of synthesis by Taq polymerase is as long as 250 nt. Sequence analysis of cloned DNA fragments expanded by Taq polymerase indicates that expansion involves multiple triplet additions and that it is asymmetric. The asymmetric distribution of terminal nucleotides in the expanded product is consistent with active expansion of the GCC strand and passive additions onto the GGC strand. The preferential elongation and expansion of the GCC strand was confirmed in studies utilizing longer repeats within a single-stranded M-13 template.
机译:人类脆弱的X综合征是遗传性智力低下的主要原因,与三核苷酸重复序列GGC:GCC的扩增有关。 DNA中的重复序列在DNA聚合酶催化期间会发生滑动。我们表征了各种DNA聚合酶:Taq DNA聚合酶,DNA聚合酶I的Klenow片段,DNA序列,DNA聚合酶-α和聚合酶-β以及HIV逆转录酶的合成GGC:GCC重复序列的滑动程度。发现所有这些酶都可扩增GGC:GCC重复序列,其中Taq DNA聚合酶表现出最广泛的扩增。从模板和引物开始,每个长度为15个核苷酸(nt),Taq聚合酶进行的一轮合成产物长至250 nt。通过Taq聚合酶扩增的克隆DNA片段的序列分析表明,扩增涉及多个三联体的添加,并且它是不对称的。扩增产物中末端核苷酸的不对称分布与GCC链的主动扩增和在GGC链上的被动添加相一致。在利用单链M-13模板中的更长重复序列的研究中,证实了GCC链的优先伸长和扩展。

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