State Key Laboratory of Food Science and Technology, School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.
J Microbiol Methods. 2013 Sep;94(3):170-4. doi: 10.1016/j.mimet.2013.06.016. Epub 2013 Jun 25.
To identify DNA aptamers demonstrating binding specificity for Shigella dysenteriae, a whole-bacterium Systemic Evolution of Ligands by Exponential enrichment (SELEX) method was applied to a combinatorial library of single-stranded DNA (ssDNA) molecules. After several rounds of selection using S. dysenteriae as the target, the highly enriched oligonucleotide pool was sequenced and then grouped into different families based on primary sequence homologies and similarities in the secondary structures. Aptamer S 1, which showed particularly high binding affinity in preliminary studies, was chosen for further characterisation. This aptamer displayed a dissociation constant (Kd value) of 23.47 ± 2.48 nM. Binding assays to assess the specificity of aptamer S 1 showed high binding affinity for S. dysenteriae and low apparent binding affinity for other bacteria. The ssDNA aptamers generated may serve as a new type of molecular probe for microbial pathogens, as it has the potential to overcome the tedious isolation and purification requirements for complex targets.
为了鉴定对志贺氏痢疾杆菌具有结合特异性的 DNA 适体,采用全菌指数富集配体系统进化(SELEX)方法对单链 DNA(ssDNA)分子的组合文库进行筛选。经过几轮以志贺氏痢疾杆菌为靶标的筛选后,对高度富集的寡核苷酸池进行测序,然后根据一级序列同源性和二级结构相似性将其分为不同的家族。在初步研究中表现出特别高结合亲和力的适体 S1 被选择用于进一步表征。该适体的解离常数(Kd 值)为 23.47 ± 2.48 nM。为评估适体 S1 的特异性而进行的结合实验表明,它对志贺氏痢疾杆菌具有高结合亲和力,对其他细菌的表观结合亲和力较低。所产生的 ssDNA 适体可用作微生物病原体的新型分子探针,因为它有可能克服对复杂靶标进行繁琐的分离和纯化的要求。