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利用微流控 SELEX 平台探测适体亲和力的极限。

Probing the limits of aptamer affinity with a microfluidic SELEX platform.

机构信息

Interdepartmental Program in Biomolecular Science and Engineering, University of California Santa Barbara, Santa Barbara, California, United States of America.

出版信息

PLoS One. 2011;6(11):e27051. doi: 10.1371/journal.pone.0027051. Epub 2011 Nov 14.

Abstract

Nucleic acid-based aptamers offer many potential advantages relative to antibodies and other protein-based affinity reagents, including facile chemical synthesis, reversible folding, improved thermal stability and lower cost. However, their selection requires significant time and resources and selections often fail to yield molecules with affinities sufficient for molecular diagnostics or therapeutics. Toward a selection technique that can efficiently and reproducibly generate high performance aptamers, we have developed a microfluidic selection process (M-SELEX) that can be used to obtain high affinity aptamers against diverse protein targets. Here, we isolated DNA aptamers against three protein targets with different isoelectric points (pI) using a common protocol. After only three rounds of selection, we discovered novel aptamer sequences that bind to platelet derived growth factor B (PDGF-BB; pI = 9.3) and thrombin (pI = 8.3) with respective dissociation constants (K(d)) of 0.028 nM and 0.33 nM, which are both superior to previously reported aptamers against these targets. In parallel, we discovered a new aptamer that binds to apolipoprotein E3 (ApoE; pI = 5.3) with a K(d) of 3.1 nM. Furthermore, we observe that the net protein charge may exert influence on the affinity of the selected aptamers. To further explore this relationship, we performed selections against PDGF-BB under different pH conditions using the same selection protocol, and report an inverse correlation between protein charge and aptamer K(d).

摘要

核酸适配体相对于抗体和其他基于蛋白质的亲和试剂具有许多潜在优势,包括易于化学合成、可折叠、热稳定性提高和成本降低。然而,它们的选择需要大量的时间和资源,而且选择往往无法产生具有足够亲和力的分子用于分子诊断或治疗。为了开发一种能够高效且可重复地产生高性能适配体的选择技术,我们开发了一种微流控选择工艺(M-SELEX),可用于获得针对各种蛋白质靶标的高亲和力适配体。在这里,我们使用相同的方案针对三个具有不同等电点(pI)的蛋白质靶标分离 DNA 适配体。仅经过三轮选择,我们就发现了与血小板衍生生长因子 B(PDGF-BB;pI=9.3)和凝血酶(pI=8.3)结合的新型适配体序列,其解离常数(Kd)分别为 0.028 nM 和 0.33 nM,均优于先前报道的针对这些靶标的适配体。同时,我们发现了一种与载脂蛋白 E3(ApoE;pI=5.3)结合的新的适配体,其 Kd 为 3.1 nM。此外,我们观察到净蛋白质电荷可能会对所选适配体的亲和力产生影响。为了进一步探索这种关系,我们使用相同的选择方案在不同的 pH 条件下针对 PDGF-BB 进行选择,并报告蛋白质电荷与适配体 Kd 之间呈反比关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55ce/3215713/ad88f216fe97/pone.0027051.g001.jpg

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