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首页> 外文期刊>Journal of drug targeting >Non-covalent ligand conjugation to biotinylated DNA nanoparticles using TAT peptide genetically fused to monovalent streptavidin
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Non-covalent ligand conjugation to biotinylated DNA nanoparticles using TAT peptide genetically fused to monovalent streptavidin

机译:使用与单价链霉亲和素基因融合的TAT肽,非共价配体与生物素化DNA纳米颗粒结合

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摘要

DNA nanoparticles (DNA NPs), which self-assemble from DNA plasmids and poly-L-lysine (pLL)-polyethylene glycol (PEG) block copolymers, transfect several cell types in vitro and in vivo with minimal toxicity and immune response. To further enhance the gene transfer efficiency of DNA NP and control its tropism, we established a strategy to efficiently attach peptide ligands to DNA NPs. The non-covalent biotinstreptavidin (SA) interaction was used for ligand conjugation to overcome problems associated with covalent conjugation methods. A fusion protein of SA with the HIV-1 TAT peptide was cloned, expressed, purified and attached to biotinylated DNA NPs. A modified SA system with tetrameric structure but monovalent biotin binding capacity was adopted and shown to reduce the aggregation of biotinylated DNA NPs compared to neutravidin. Compared to unmodified DNA NPs, TAT modified DNA NPs significantly enhanced in vitro gene transfer, particularly at low DNA concentrations. Studies of cellular uptake and cellular distribution of the DNA NPs indicated that attaching TAT enhanced binding of DNA NPs to cell surface but not internalization at high DNA concentrations. In vivo studies showed that TAT modified DNA NPs mediated equal level of gene transfer to the mouse airways via the luminal route compared to unmodified DNA NPs.
机译:DNA纳米颗粒(DNA NPs)由DNA质粒和聚L-赖氨酸(pLL)-聚乙二醇(PEG)嵌段共聚物自组装而成,可在体外和体内转染多种细胞类型,且毒性和免疫反应降至最低。为了进一步提高DNA NP的基因转移效率并控制其向性,我们建立了将肽配体有效连接到DNA NP的策略。非共价生物素链霉亲和素(SA)相互作用用于配体结合,以克服与共价结合方法相关的问题。 SA与HIV-1 TAT肽的融合蛋白被克隆,表达,纯化并附着于生物素化的DNA NP上。具有四聚体结构但具有单价生物素结合能力的改良SA系统被采用,并且显示出与中性亲和素相比可减少生物素化DNA NP的聚集。与未修饰的DNA NP相比,TAT修饰的DNA NP显着增强了体外基因转移,尤其是在低DNA浓度下。 DNA NPs的细胞摄取和细胞分布研究表明,附着TAT可以增强DNA NPs与细胞表面的结合,但不能在高DNA浓度下内化。体内研究表明,与未修饰的DNA NPs相比,TAT修饰的DNA NPs通过腔途径介导的基因转移水平相同。

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