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Gold nanoparticle-assisted primer walking for closing the human chromosomal gap

机译:金纳米粒子辅助引物行走可关闭人类染色体缺口

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The finished sequence of the human genome stili contains 260 euchromatic gaps. All the PCR-based genome walking techniques used to close gaps have common limitations, such as low efficiency and low specificity. We herein describe a strategy to solve this problem by employing gold nanoparticles (AuNPs) to improve the efficiency in primer walking amplification. We used this strategy to close a gap in human chromosome 5 containing a DNA stretch composed of the 12SAT repeat. The obtained gap sequence is highly conserved among several mammalian genomes. The demonstrated AuNP-assisted primer walking strategy is capable of effectively improving the specificity of PCR amplification and enriching the yield of target DNA fragments; it offers a new avenue for closing gaps left by current sequencing methods.
机译:人类基因组刚菌的完成序列包含260个常染色体缺口。所有用于缩小缺口的基于PCR的基因组步移技术都有共同的局限性,例如效率低和特异性低。我们在本文中描述了一种通过使用金纳米颗粒(AuNPs)来提高引物步行扩增效率的解决策略。我们使用这种策略来缩小人类5号染色体上的缺口,该缺口包含由12SAT重复序列组成的DNA片段。所获得的缺口序列在几个哺乳动物基因组中高度保守。证明的AuNP辅助引物步移策略能够有效提高PCR扩增的特异性,并丰富目标DNA片段的产量。它为弥补当前测序方法留下的空白提供了新途径。

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