Shoji Atsushi, Kuwahara Masayasu, Ozaki Hiroaki, Sawai Hiroaki
Department of Applied Chemistry, Gunma University, Kiryu, Gunma 376-8515 Japan.
J Am Chem Soc. 2007 Feb 7;129(5):1456-64. doi: 10.1021/ja067098n.
A thalidomide-binding aptamer was produced by systematic evolution of ligands by exponential enrichment from a library of non-natural DNA in which thymidine had been replaced with a modified deoxyuridine bearing a cationic functional group via a hydrophobic methylene linker at the C5 position. The additional functional group in the modified DNA aptamer could improve stability against nucleases and increase the binding affinity to thalidomide. The selected aptamer could recognize thalidomide enantioselectively, although a racemic thalidomide-attached gel was used for the selection. Surface plasmon resonance and fluorescence titration studies revealed that the selected modified DNA aptamer and a truncated version bound with an (R)-thalidomide derivative with high enantioselectivity, but not with the (S)-form. The modified group in the DNA aptamer is indispensable for the interaction with thalidomide, as the corresponding natural type DNA bearing the same base sequence showed no binding affinity with (R)- nor (S)-thalidomide. Computational sequence analysis suggested that the selected apatamer (108 mer) could fold into a three-way junction structure; however, truncation of this aptamer (31 mer) revealed that the thalidomide-binding site is a hairpin-bulge region that is a component of one of the arms of the three-way junction structure. The Kd value of the truncated 31 mer aptamer for binding with the (R)-thalidomide derivative was 1.0 microM estimated from fluorescence titration study. The aptamer that can recognize a single enantiomer of thalidomide will be useful as a biochemical tool for the analysis and study of the biological action of thalidomide enantiomers.
通过指数富集配体系统进化技术,从一个非天然DNA文库中筛选出一种与沙利度胺结合的适体。在该文库中,胸腺嘧啶核苷被一种修饰的脱氧尿苷取代,该修饰的脱氧尿苷在C5位通过疏水亚甲基连接基团带有一个阳离子官能团。修饰后的DNA适体中的额外官能团可以提高其对核酸酶的稳定性,并增加与沙利度胺的结合亲和力。尽管在筛选过程中使用的是外消旋沙利度胺连接的凝胶,但所筛选出的适体能够对沙利度胺进行对映选择性识别。表面等离子体共振和荧光滴定研究表明,所筛选出的修饰DNA适体及其截短版本与(R)-沙利度胺衍生物具有高对映选择性结合,但与(S)-形式不结合。DNA适体中的修饰基团对于与沙利度胺的相互作用是不可或缺的,因为具有相同碱基序列的相应天然型DNA与(R)-和(S)-沙利度胺均无结合亲和力。计算序列分析表明,所筛选出的适体(108聚体)可以折叠成一个三向连接结构;然而,对该适体进行截短(31聚体)后发现,沙利度胺结合位点是一个发夹-凸起区域,它是三向连接结构其中一个臂的组成部分。根据荧光滴定研究估计,截短后的31聚体适体与(R)-沙利度胺衍生物结合的解离常数(Kd)值为1.0 μM。能够识别沙利度胺单一对映体的适体将作为一种生化工具,用于分析和研究沙利度胺对映体的生物学作用。