适体
化学
流式细胞术
嗜酸乳杆菌
DNA
细胞
指数富集配体系统进化
生物物理学
荧光显微镜
分子
核糖核酸
分子生物学
细菌
荧光
生物化学
基因
生物
遗传学
物理
有机化学
量子力学
益生菌
作者
Camille Hamula,Hongquan Zhang,Le Luo Guan,Xing‐Fang Li,X. Chris Le
摘要
Single-stranded DNA or RNA aptamer molecules have usually been selected against purified target molecules. To eliminate the need of purifying target molecules on the cell surface, we have developed a selection technique using live bacterial cells in suspension as targets, to select for ssDNA aptamers specific to cell surface molecules. Lactobacillus acidophilus cells were chosen to demonstrate proof of principle based on their high abundance of surface molecules (potential targets). Aptamer pools obtained after 6−8 rounds of selection demonstrated high affinity for and selective binding with L. acidophilus cells when tested via flow cytometry, microscopy, and fluorescence measurements. Out of 27 aptamers that were cloned and sequenced, one sequence, hemag1P, was found to bind to L. acidophilus much more strongly and specifically than other cells tested. This aptamer was predicted to have a tight hairpin secondary structure. On average, an estimated 164 ± 47 aptamer molecules were bound to a target cell with an apparent Kd of 13 ± 3 nM. A likely putative molecular target of hemag1P is the S-layer protein on the cell surface.
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