Friedel Thorsten, Hanisch Lydia J, Muth Anke, Honegger Annemarie, Abken Hinrich, Plückthun Andreas, Buchholz Christian J, Schneider Irene C
Section of Molecular Biotechnology and Gene Therapy, Paul-Ehrlich-Institut, Paul-Ehrlich-Str. 51-59, Langen 63225, Germany.
Roche Pharmaceutical Research and Early Development, Protein Engineering Group, Roche Innovation Center Zürich, Schlieren 8952, Switzerland.
Protein Eng Des Sel. 2015 Apr;28(4):93-106. doi: 10.1093/protein/gzv005. Epub 2015 Feb 25.
An increasing number of applications require the expression of single-chain variable fragments (scFv) fusion proteins in mammalian cells at the cell surface membrane. Here we assessed the CD30-specific scFv HRS3, which is used in immunotherapy, for its ability to retarget lentiviral vectors (LVs) to CD30 and to mediate selective gene transfer into CD30-positive cells. Fused to the C-terminus of the type-II transmembrane protein hemagglutinin (H) of measles virus and expressed in LV packaging cells, gene transfer mediated by the released LV particles was inefficient. A series of point mutations in the scFv framework regions addressing its biophysical properties, which substantially improved production and increased the melting temperature without impairing its kinetic binding behavior to CD30, also improved the performance of LV particles. Gene transfer into CD30-positive cells increased ∼100-fold due to improved transport of the H-scFv protein to the plasma membrane. Concomitantly, LV particle aggregation and syncytia formation in packaging cells were substantially reduced. The data suggest that syncytia formation can be triggered by trans-cellular dimerization of H-scFv proteins displayed on adjacent cells. Taken together, we show that the biophysical properties of the targeting ligand have a decisive role for the gene transfer efficiency of receptor-targeted LVs.
越来越多的应用需要在哺乳动物细胞的细胞膜表面表达单链可变片段(scFv)融合蛋白。在此,我们评估了用于免疫治疗的CD30特异性scFv HRS3将慢病毒载体(LV)重新靶向至CD30以及介导选择性基因转移至CD30阳性细胞的能力。与麻疹病毒II型跨膜蛋白血凝素(H)的C末端融合并在LV包装细胞中表达后,释放的LV颗粒介导的基因转移效率低下。对scFv框架区域进行一系列针对其生物物理特性的点突变,这在不损害其与CD30的动力学结合行为的情况下大幅提高了产量并提高了解链温度,同时也改善了LV颗粒的性能。由于H-scFv蛋白向质膜的转运得到改善,向CD30阳性细胞的基因转移增加了约100倍。与此同时,包装细胞中LV颗粒的聚集和多核巨细胞形成显著减少。数据表明,相邻细胞上展示的H-scFv蛋白的跨细胞二聚化可触发多核巨细胞形成。综上所述,我们表明靶向配体的生物物理特性对受体靶向LV的基因转移效率具有决定性作用。