Department of Biochemistry, University of Zurich, Winterthurerstr. 190, CH-8057 Zurich, Switzerland.
J Mol Biol. 2011 Jan 14;405(2):410-26. doi: 10.1016/j.jmb.2010.10.040. Epub 2010 Nov 5.
Adenoviruses (Ads) hold great promise as gene vectors for diagnostic or therapeutic applications. The native tropism of Ads must be modified to achieve disease site-specific gene delivery by Ad vectors and this should be done in a programmable way and with technology that can realistically be scaled up. To this end, we applied the technologies of designed ankyrin repeat proteins (DARPins) and ribosome display to develop a DARPin that binds the knob domain of the Ad fiber protein with low nanomolar affinity (K(D) 1.35 nM) and fused this protein with a DARPin specific for Her2, an established cell-surface biomarker of human cancers. The stability of the complex formed by this bispecific targeting adapter and the Ad virion resulted in insufficient gene transfer and was subsequently improved by increasing the valency of adapter-virus binding. In particular, we designed adapters that chelated the knob in a bivalent or trivalent fashion and showed that the efficacy of gene transfer by the adapter-Ad complex increased with the functional affinity of these molecules. This enabled efficient transduction at low stoichiometric adapter-to-fiber ratios. We confirmed the Her2 specificity of this transduction and its dependence on the Her2-binding DARPin component of the adapters. Even the adapter molecules with four fused DARPins could be produced and purified from Escherichia coli at very high levels. In principle, DARPins can be generated against any target and this adapter approach provides a versatile strategy for developing a broad range of disease-specific gene vectors.
腺病毒 (Ads) 在作为诊断或治疗应用的基因载体方面具有巨大的潜力。必须对 Ads 的天然趋向性进行修饰,以使 Ad 载体实现疾病部位特异性基因传递,并且这种修饰应该以可编程的方式进行,并且使用可以实际扩展的技术。为此,我们应用设计的锚蛋白重复蛋白 (DARPins) 和核糖体展示技术开发了一种 DARPin,该 DARPin 以低纳摩尔亲和力 (K(D)1.35 nM) 结合 Ad 纤维蛋白的 knob 结构域,并将这种蛋白与针对 Her2 的 DARPin 融合,Her2 是人类癌症的一种已建立的细胞表面生物标志物。由这种双特异性靶向接头和 Ad 病毒粒子形成的复合物的稳定性导致基因转移不足,随后通过增加接头-病毒结合的价数来改善。特别是,我们设计了以二价或三价螯合 knob 的接头,并表明接头-Ad 复合物的基因转移效率随这些分子的功能亲和力增加而增加。这使得在低计量比的接头-纤维比率下也能实现高效转导。我们证实了这种转导的 Her2 特异性及其对接头中 Her2 结合 DARPin 成分的依赖性。即使是带有四个融合 DARPins 的接头分子也可以从大肠杆菌中非常高的水平进行生产和纯化。原则上,DARPins 可以针对任何目标生成,并且这种接头方法为开发广泛的疾病特异性基因载体提供了一种通用策略。