Tolle Fabian, Wilke Julian, Wengel Jesper, Mayer Günter
LIMES Institute, University of Bonn, Bonn, Germany.
Nucleic Acid Center, Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Odense M, Denmark.
PLoS One. 2014 Dec 9;9(12):e114693. doi: 10.1371/journal.pone.0114693. eCollection 2014.
The selection of nucleic acid aptamers is an increasingly important approach to generate specific ligands binding to virtually any molecule of choice. However, selection-inherent amplification procedures are prone to artificial by-product formation that prohibits the enrichment of target-recognizing aptamers. Little is known about the formation of such by-products when employing nucleic acid libraries as templates. We report on the formation of two different forms of by-products, named ladder- and non-ladder-type observed during repetitive amplification in the course of in vitro selection experiments. Based on sequence information and the amplification behaviour of defined enriched nucleic acid molecules we suppose a molecular mechanism through which these amplification by-products are built. Better understanding of these mechanisms might help to find solutions minimizing by-product formation and improving the success rate of aptamer selection.
核酸适配体的筛选是生成与几乎任何所选分子特异性结合的配体的一种日益重要的方法。然而,筛选固有的扩增程序容易产生人工副产物,这阻碍了靶向识别适配体的富集。当使用核酸文库作为模板时,对于此类副产物的形成知之甚少。我们报道了在体外筛选实验过程中的重复扩增期间观察到的两种不同形式的副产物,即阶梯型和非阶梯型。基于已定义的富集核酸分子的序列信息和扩增行为,我们推测了这些扩增副产物形成的分子机制。更好地理解这些机制可能有助于找到减少副产物形成并提高适配体筛选成功率的解决方案。