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Characterization of an RNA Aptamer Against HPV-16 L1 Virus-Like Particles

机译:针对HPV-16 L1病毒样颗粒的RNA适体的表征

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The human papillomavirus (HPV) capsid is mainly composed of the L1 protein that can self-assemble into virus-like particles (VLPs) that are structurally and immunologically similar to the infectious virions. We report here the characterization of RNA aptamers that recognize baculovirus-produced HPV-16 L1 VLPs. Interaction and slot-blot binding assays showed that all isolated aptamers efficiently bound HPV-16 VLPs, although the Sc5-c3 aptamer showed the highest specificity and affinity (K-d = 0.05 pM). Sc5-c3 secondary structure consisted of a hairpin with a symmetric bubble and an unstructured 3'end. Biochemical and genetic analyses showed that the Sc5-c3 main loop is directly involved on VLPs binding. In particular, binding specificity appeared mediated by five non-consecutive nucleotide positions. Experiments using bacterial-produced HPV-16 L1 resulted in low Sc5-c3 binding, suggesting that recognition of HPV-16 L1 VLPs relies on quaternary structure features not present in bacteria-produced L1 protein. Sc5-c3 produced specific and stable binding to HPV-16 L1 VLPs even in biofluid protein mixes and thus it may provide a potential diagnostic tool for active HPV infection
机译:人乳头瘤病毒(HPV)衣壳主要由L1蛋白质组成,该蛋白质可以自组装成病毒样颗粒(VLP),其结构和免疫学上类似于感染性病毒粒子。我们在这里报告识别杆状病毒生产的HPV-16 L1 VLP的RNA适体的表征。相互作用和缝隙结合试验表明,尽管Sc5-c3适体显示出最高的特异性和亲和力(K-d = 0.05 pM),但所有分离的适体均能有效结合HPV-16 VLP。 Sc5-c3二级结构由具有对称气泡和非结构化3'末端的发夹组成。生化和遗传分析表明,Sc5-c3主环直接参与VLP的结合。特别地,结合特异性似乎由五个非连续核苷酸位置介导。使用细菌产生的HPV-16 L1的实验导致低的Sc5-c3结合,这表明HPV-16 L1 VLP的识别依赖于细菌产生的L1蛋白中不存在的四级结构特征。即使在生物流体蛋白混合物中,Sc5-c3仍可与HPV-16 L1 VLP产生特异性且稳定的结合,因此它可能为主动HPV感染提供潜在的诊断工具

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