Department of Chemistry and Centre for Research on Biomolecular Interactions, York University, Toronto, Ontario M3J 1P3, Canada.
Anal Chim Acta. 2010 Nov 29;681(1-2):92-7. doi: 10.1016/j.aca.2010.09.044. Epub 2010 Oct 18.
Aptamer-facilitated Protein Isolation from Cells (AptaPIC) is a recently introduced method that allows, in particular, generation of aptamers for a protein target in a context of a crude cell lysate. The approach enables efficient, tag-free, affinity purification of target proteins which are not available in a pure form a priori, and for which no affinity ligands are available. In the proof-of-principle work, AptaPIC was used to develop aptamers for and purify MutS, a DNA mismatch repair protein. The DNA-binding nature of MutS raised concerns that AptaPIC was not a generic technique and could be inapplicable to protein targets that do not possess native nucleic acid-binding properties. Here we prove that these concerns are invalid. We used AptaPIC to generate pools of aptamers for human Platelet-Derived Growth Factor chain B (PDGF-B) protein, a non-DNA binding protein, in the context of a bacterial cell lysate, and subsequently purify it from the same lysate. Within a small number of rounds, the efficiencies of aptamer selection were similar in conventional Systematic Evolution of Ligands by Exponential Enrichment (SELEX) for pure protein and in AptaPIC for protein in the cell lysate. The conventional selection approach resulted in an aptamer pool with an EC(50) value of 2.0±0.1 μM, while the AptaPIC selection approach resulted in a pool with an EC(50) value of 3.9±0.4 μM. Our results clearly demonstrate that selection of aptamers for proteins in the cell lysate is not only realistic but also efficient.
适配体辅助的细胞内蛋白质分离(AptaPIC)是一种新方法,尤其可用于在粗制细胞裂解物的情况下生成蛋白质靶标的适配体。该方法可有效、无标签且亲和纯化以前无法获得纯形式的、且不存在亲和配体的靶标蛋白。在原理验证工作中,AptaPIC 用于开发 MutS(一种 DNA 错配修复蛋白)的适配体并对其进行纯化。MutS 的 DNA 结合性质引发了人们的担忧,即 AptaPIC 不是一种通用技术,可能不适用于不具有天然核酸结合特性的蛋白质靶标。在这里,我们证明了这些担忧是没有根据的。我们使用 AptaPIC 在细菌细胞裂解物的背景下为血小板衍生生长因子链 B(PDGF-B)蛋白(一种非 DNA 结合蛋白)生成适配体库,并随后从同一裂解物中对其进行纯化。在少数轮次中,适配体选择的效率在用于纯蛋白的常规系统进化配体的指数富集(SELEX)和用于细胞裂解物中蛋白的 AptaPIC 中相似。常规选择方法得到的适配体库的 EC(50)值为 2.0±0.1 μM,而 AptaPIC 选择方法得到的适配体库的 EC(50)值为 3.9±0.4 μM。我们的结果清楚地表明,在细胞裂解物中对蛋白质进行适配体选择不仅是可行的,而且效率也很高。