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用于抗蛋白质适体高通量筛选的功能性RNA微阵列。

Functional RNA microarrays for high-throughput screening of antiprotein aptamers.

作者信息

Collett James R, Cho Eun Jeong, Lee Jennifer F, Levy Matthew, Hood Allysia J, Wan Christine, Ellington Andrew D

机构信息

Department of Chemistry and Biochemistry, Institute for Cellular and Molecular Biology, University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Anal Biochem. 2005 Mar 1;338(1):113-23. doi: 10.1016/j.ab.2004.11.027.

Abstract

High-throughput methods for generating aptamer microarrays are described. As a proof-of-principle, the microarrays were used to screen the affinity and specificity of a pool of robotically selected antilysozyme RNA aptamers. Aptamers were transcribed in vitro in reactions supplemented with biotinyl-guanosine 5'-monophosphate, which led to the specific addition of a 5' biotin moiety, and then spotted on streptavidin-coated microarray slides. The aptamers captured target protein in a dose-dependent manner, with linear signal response ranges that covered seven orders of magnitude and a lower limit of detection of 1 pg/mL (70 fM). Aptamers on the microarray retained their specificity for target protein in the presence of a 10,000-fold (w/w) excess of T-4 cell lysate protein. The RNA aptamer microarrays performed comparably to current antibody microarrays and within the clinically relevant ranges of many disease biomarkers. These methods should also prove useful for generating other functional RNA microarrays, including arrays for genomic noncoding RNAs that bind proteins. Integrating RNA aptamer microarray production with the maturing technology for automated in vitro selection of antiprotein aptamers should result in the high-throughput production of proteome chips.

摘要

本文描述了用于生成适配体微阵列的高通量方法。作为原理验证,该微阵列用于筛选一组通过机器人选择的抗溶菌酶RNA适配体的亲和力和特异性。适配体在补充有生物素化鸟苷5'-单磷酸的反应中进行体外转录,这导致在5'端特异性添加生物素部分,然后点样到包被链霉亲和素的微阵列载玻片上。适配体以剂量依赖的方式捕获靶蛋白,线性信号响应范围覆盖七个数量级,检测下限为1 pg/mL(70 fM)。在存在10000倍(w/w)过量的T-4细胞裂解物蛋白的情况下,微阵列上的适配体对靶蛋白仍保持其特异性。RNA适配体微阵列的性能与当前的抗体微阵列相当,且在许多疾病生物标志物的临床相关范围内。这些方法也应证明对生成其他功能性RNA微阵列有用,包括用于结合蛋白质的基因组非编码RNA的阵列。将RNA适配体微阵列的生产与用于抗蛋白质适配体自动化体外选择的成熟技术相结合,应能实现蛋白质组芯片的高通量生产。

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