Department of Chemistry, National Dong Hwa University, Hualien 974003, Taiwan.
Medical Imaging Research Center, Institute for Radiological Research, Chang Gung University/Chang Gung Memorial Hospital, Taoyuan 33323, Taiwan.
Sensors (Basel). 2020 Jun 25;20(12):3592. doi: 10.3390/s20123592.
A helical epitope-peptide (lle-Gly) was selected from the α-helix structure of the HIV protease (PR) as the template, which represents an intricate interplay between structure conformation and dimerization. The peptide template was mixed with water, trifluoroethanol (TFE), and acetonitrile (ACN) at a certain ratio to enlarge the helical conformation in the solution for the fabrication of helical epitope-mediated molecularly imprinted polymers (HEMIPs) on a quartz crystal microbalance (QCM) chip. The template molecules were then removed under equilibrium batch rebinding conditions involving 5% acetic acid/water. The resulting HEMIPs chip exhibited a high affinity toward template peptide HIV PR, His-tagged HIV PR, and HIV PR, with dissociation constants (K) as 160, 43.3, and 78.5 pM, respectively. The detection limit of the developed HIV PR QCM sensor is 0.1 ng/mL. The HEMIPs chip exhibited a high affinity and selectivity to bind HIV PR and subsequently to an inhibitor of HIV PR (nelfinavir). The HIV PR binding site was properly oriented on the HEMIPs-chip to develop a HIV PR/HEMIPs chip, which can effectively bind nelfinavir to establish a sandwich assay. The nelfinavir then attached to the HIV PR/HEMIPs chip, which can be easily removed involving 0.8% acetic acid/water. Therefore, HIV PR/HEMIPs chip can be useful to screen for other HIV PR inhibitors. This technique may improve drug targeting for HIV therapy and also strengthen investigations into other virus assays.
一种螺旋表位肽(Ile-Gly)是从 HIV 蛋白酶(PR)的α螺旋结构中选择出来的模板,它代表了结构构象和二聚化之间的复杂相互作用。将肽模板与水、三氟乙醇(TFE)和乙腈(ACN)按一定比例混合,在溶液中扩大螺旋构象,用于在石英晶体微天平(QCM)芯片上制造螺旋表位介导的分子印迹聚合物(HEMIPs)。然后在涉及 5%乙酸/水的平衡批量复配条件下除去模板分子。所得 HEMIPs 芯片对模板肽 HIV PR、His 标记的 HIV PR 和 HIV PR 表现出高亲和力,解离常数(K)分别为 160、43.3 和 78.5 pM。所开发的 HIV PR QCM 传感器的检测限为 0.1ng/mL。HEMIPs 芯片对 HIV PR 具有高亲和力和选择性,随后对 HIV PR 的抑制剂(奈非那韦)具有高亲和力和选择性。HIV PR 结合位点在 HEMIPs 芯片上正确定向,以开发 HIV PR/HEMIPs 芯片,该芯片可有效结合奈非那韦建立三明治测定法。然后,奈非那韦附着在 HIV PR/HEMIPs 芯片上,用 0.8%乙酸/水很容易将其除去。因此,HIV PR/HEMIPs 芯片可用于筛选其他 HIV PR 抑制剂。该技术可改善 HIV 治疗的药物靶向,也可加强对其他病毒检测的研究。