Räty Jani K, Airenne Kari J, Marttila Ari T, Marjomäki Varpu, Hytönen Vesa P, Lehtolainen Pauliina, Laitinen Olli H, Mähönen Anssi J, Kulomaa Markku S, Ylä-Herttuala Seppo
A. I. Virtanen Institute, Department of Biotechnology and Molecular Medicine, University of Kuopio, P.O. Box 1627, FIN-70120 Kuopio, Finland.
Mol Ther. 2004 Feb;9(2):282-91. doi: 10.1016/j.ymthe.2003.11.004.
Flexible alteration of virus surface properties would be beneficial for enhanced and targeted gene delivery. A useful approach could be based on a high-affinity receptor-ligand pair, such as avidin and biotin. In this study, we have constructed an avidin-displaying baculovirus, Baavi. Avidin display was expected to enhance cell transduction due to the high positive charge of avidin in physiological pH and to provide a binding site for covering the virus with desired biotinylated ligands. Successful incorporation of avidin on the virus envelope was detected by immunoblotting and electron microscopy. Multiple biotin-binding sites per virus were detected with fluorescence-correlation spectroscopy and tight biotin binding was observed using an optical biosensor, IAsys. Baavi showed a 5-fold increase in transduction efficiency in rat malignant glioma cells (BT4C) and a 26-fold increase in rabbit aortic smooth muscle (RAASMC) cells compared to wild-type baculovirus. Enhanced transduction was also observed with biotinylated target cells. Biotinylated epidermal growth factor (EGF) enabled specific targeting of the virus with high efficiency to EGF receptor-expressing (SKOV-3) cells. An additional advantage of the avidin display was demonstrated with biotinylated paramagnetic particles, which enabled magnetic targeting. Altogether, we show that avidin display is a rapid and versatile method to improve viral properties for gene delivery.
灵活改变病毒表面特性将有利于增强和靶向基因传递。一种有用的方法可能基于高亲和力的受体 - 配体对,如抗生物素蛋白和生物素。在本研究中,我们构建了一种展示抗生物素蛋白的杆状病毒,Baavi。由于抗生物素蛋白在生理pH下具有高正电荷,预计抗生物素蛋白的展示可增强细胞转导,并为用所需的生物素化配体覆盖病毒提供结合位点。通过免疫印迹和电子显微镜检测到抗生物素蛋白成功掺入病毒包膜。用荧光相关光谱法检测到每个病毒有多个生物素结合位点,并使用光学生物传感器IAsys观察到紧密的生物素结合。与野生型杆状病毒相比,Baavi在大鼠恶性胶质瘤细胞(BT4C)中的转导效率提高了5倍,在兔主动脉平滑肌(RAASMC)细胞中提高了26倍。在生物素化的靶细胞中也观察到转导增强。生物素化的表皮生长因子(EGF)能够使病毒高效特异性靶向表达EGF受体的(SKOV - 3)细胞。抗生物素蛋白展示的另一个优点通过生物素化的顺磁性颗粒得以证明,其能够实现磁靶向。总之,我们表明抗生物素蛋白展示是一种快速且通用的方法,可改善用于基因传递的病毒特性。