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无需聚合酶链反应的用于夹钳连接的高效DNA连接

High-efficiency DNA ligation for clamp attachment without polymerase chain reaction.

作者信息

Kim Andrea S, Holmquist Gerald P, Thilly William G

机构信息

Biological Engineering Division, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Anal Biochem. 2002 Nov 15;310(2):179-85. doi: 10.1016/s0003-2697(02)00383-4.

Abstract

We coupled ligation with mass action to achieve high-efficiency clamp attachment without polymerase chain reaction (PCR). Using a 10-fold molar excess of a GC-rich clamp of synthesized and hybridized oligonucleotides, we achieved the maximum clamp-ligation efficiency in which the clamp was ligated to >95% of 10(10)-10(12) restriction ends of a PCR-amplified fragment. The maximum efficiency was confirmed by ligating the clamp to 10(11)-10(12) restriction ends of human genomic DNA. Our approach can be added to a constant denaturant capillary electrophoresis (CDCE)-based method of analyzing rare point mutants at fractions as low as 10(-6); such mutants appear as small copy numbers in the initial samples. This CDCE-based method alone is applicable to only those DNA sequences juxtaposed with an internally occurring clamp of a higher melting temperature in genomic DNA. Since such sequences represent 9% of the human genome, the addition of clamp ligation significantly increases the scanning range for the human genome without reducing the initial mutant copy numbers. Furthermore, clamp ligation/attachment without PCR prevents PCR-created mutants from interfering with rare mutational analysis. In addition to those applications seeking high-efficiency DNA ligation, our approach can be generally applied to ligation of restriction ends.

摘要

我们将连接反应与质量作用相结合,以在不进行聚合酶链反应(PCR)的情况下实现高效的夹钳连接。使用合成并杂交的富含GC的寡核苷酸夹钳,其摩尔过量为10倍,我们实现了夹钳连接的最大效率,其中夹钳与PCR扩增片段的10¹⁰ - 10¹²个限制性末端中的>95%进行了连接。通过将夹钳连接到人类基因组DNA的10¹¹ - 10¹²个限制性末端,证实了最大效率。我们的方法可以添加到基于恒定变性毛细管电泳(CDCE)的分析方法中,用于分析低至10⁻⁶比例的罕见点突变;此类突变体在初始样品中以低拷贝数出现。仅这种基于CDCE的方法仅适用于与基因组DNA中具有较高解链温度的内部夹钳相邻的那些DNA序列。由于此类序列占人类基因组的9%,夹钳连接的添加显著增加了人类基因组的扫描范围,同时不降低初始突变体拷贝数。此外,不进行PCR的夹钳连接/附着可防止PCR产生的突变体干扰罕见突变分析。除了那些寻求高效DNA连接的应用外,我们的方法通常可应用于限制性末端的连接。

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