化学
底漆延伸
模板
DNA
DNA聚合酶
底漆(化妆品)
指数富集配体系统进化
适体
聚合酶
体外
组合化学
分子生物学
计算生物学
生物化学
纳米技术
生物
核糖核酸
基因
有机化学
材料科学
基序列
作者
Jonathan D. Vaught,Chris Bock,Jeff Carter,Tim Fitzwater,Matt Otis,Dan Schneider,Justin C. Rolando,Sheela Waugh,Sheri K. Wilcox,Bruce E. Eaton
摘要
Six new 5-position modified dUTP derivatives connected by a unique amide linkage were synthesized and tested for compatibility with the enzymatic steps of in vitro selection. Six commercially available DNA polymerases were tested for their ability to efficiently incorporate each of these dUTP derivatives during PCR. It was not possible to perform PCR under standard conditions using any of the modified dUTP derivatives studied. In contrast, primer extension reactions of random templates, as well as defined sequence templates, were successful. KOD XL and D. Vent DNA polymerases were found to be the most efficient at synthesizing full-length primer extension product, with all of the dUTP derivatives tested giving yields similar to those obtained with TTP. Several of these modified dUTPs were then used in an in vitro selection experiment comparing the use of modified dUTP derivatives with TTP for selecting aptamers to a protein target (necrosis factor receptor superfamily member 9, TNFRSF9) that had previously been found to be refractory to in vitro selection using DNA. Remarkably, selections employing modified DNA libraries resulted in the first successful isolation of DNA aptamers able to bind TNFRSF9 with high affinity.
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