Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, 635 Barnhill Dr., Indianapolis, IN 46202, USA.
Laboratory of Vaccinology and Biobanking, CIRCB BP 3077 Messa, Yaoundé P.O. Box 3077, Cameroon.
Viruses. 2023 Jun 22;15(7):1414. doi: 10.3390/v15071414.
We selected a novel biotin-binding peptide for sensing biotin, biotinylated proteins, and nucleotides. From a 15-mer library displayed on the RNA coliphage Qβ, a 15-amino acid long peptide (HGHGWQIPVWPWGQG) hereby referred to as a nanotag was identified to selectively bind biotin. The target selection was achieved through panning with elution by infection. The selected peptide was tested as a transducer for an immunogenic epitope of the foot-and-mouth disease virus (FMDV) on Qβ phage platform separated by a linker. The biotin-tag showed no significant influence on the affinity of the epitope to its cognate antibody (SD6). The nanotag-bound biotin selectively fused either to the C- or N-terminus of the epitope. The epitope would not bind or recognize SD6 while positioned at the N-terminus of the nanotag. Additionally, the biotin competed linearly with the SD6 antibody in a competitive ELISA. Competition assays using the selected recombinant phage itself as a probe or transducer enable the operationalization of this technology as a biosensor toolkit to sense and quantify SD6 analyte. Herein, the published Strep II nanotag (DVEWLDERVPLVET) was used as a control and has similar functionalities to our proposed novel biotin-tag thereby providing a new platform for developing devices for diagnostic purposes.
我们选择了一种新型的生物素结合肽来检测生物素、生物素化蛋白和核苷酸。从展示在 RNA 噬菌体 Qβ上的 15 肽库中,鉴定出一种 15 个氨基酸长的肽(HGHGWQIPVWPWGQG),简称纳米标签,它可以选择性地结合生物素。通过用感染洗脱的淘选实现了目标选择。所选的肽被测试为在 Qβ噬菌体平台上作为口蹄疫病毒(FMDV)免疫表位的传感器,该表位通过接头与噬菌体分离。生物素标签对表位与其同源抗体(SD6)的亲和力没有显著影响。纳米标签结合的生物素选择性地融合到表位的 C 端或 N 端。当表位位于纳米标签的 N 端时,它不会与 SD6 结合或识别。此外,生物素在竞争性 ELISA 中与 SD6 抗体呈线性竞争。使用选定的重组噬菌体本身作为探针或传感器进行的竞争测定,使该技术能够作为生物传感器工具包用于检测和定量 SD6 分析物。在此,使用已发表的链霉亲和素 II 纳米标签(DVEWLDERVPLVET)作为对照,它具有与我们提出的新型生物素标签类似的功能,从而为开发用于诊断目的的设备提供了新的平台。