Bruno John G, Carrillo Maria P, Phillips Taylor
Operational Technologies Corporation, 4100 NW Loop 410, Suite 230, San Antonio, TX 78229, USA.
J Biomol Tech. 2008 Apr;19(2):109-15.
We sought to develop a novel competitive fluorescence resonance energy transfer (FRET)-aptamer-based strategy for detection of foot-and-mouth (FMD) disease within minutes. A 14-amino-acid peptide from the VP1 structural protein, which is conserved among 16 strains of O-serotype FMD virus, was synthesized and labeled with Black Hole Quencher-2 (BHQ-2) dye. Polyclonal FMD DNA aptamers were labeled with Alexa Fluor 546-14-dUTP by polymerase chain reaction and allowed to bind the BHQ-2-peptide conjugate. Following purification of the FRET-aptamer-peptide complex, a "lights off" response was observed within 10 minutes and was sensitive to a level of 25-250 ng/mL of FMD peptide. Ten candidate aptamers were sequenced from the polyclonal family. The aptamer candidates were screened in an enzyme-based plate assay. A high- and low-affinity aptamer candidate were each labeled with Alexa Fluor 546-14-dUTP by asymmetric polymerase chain reaction and used in the competitive FRET assay, but neither matched the sensitivity of the polyclonal FRET response, indicating the need for further screening of the aptamer library.
我们试图开发一种基于新型竞争性荧光共振能量转移(FRET)适配体的策略,以便在几分钟内检测口蹄疫(FMD)。合成了来自VP1结构蛋白的一段14个氨基酸的肽,该肽在16种O型口蹄疫病毒株中保守,并标记了黑洞猝灭剂-2(BHQ-2)染料。通过聚合酶链反应,用Alexa Fluor 546-14-dUTP标记多克隆口蹄疫DNA适配体,并使其与BHQ-2肽偶联物结合。纯化FRET适配体-肽复合物后,在10分钟内观察到“熄灯”反应,并且对25-250 ng/mL的口蹄疫肽水平敏感。从多克隆家族中对10个候选适配体进行了测序。候选适配体在基于酶的平板试验中进行筛选。通过不对称聚合酶链反应,分别用Alexa Fluor 546-14-dUTP标记高亲和力和低亲和力候选适配体,并用于竞争性FRET试验,但两者均未达到多克隆FRET反应的灵敏度,这表明需要进一步筛选适配体文库。