a Neurology Research Center , Kerman University of Medical Sciences , Kerman , Iran.
b Department of Biochemistry, School of Medicine , Kerman University of Medical Sciences , Kerman , Iran.
Artif Cells Nanomed Biotechnol. 2018 Dec;46(8):1781-1791. doi: 10.1080/21691401.2017.1392316. Epub 2017 Oct 28.
Non-viral gene delivery methods are considered due to safety and simplicity in human gene therapy. Since the use of cationic peptide and niosome represent a promising approach for gene delivery purposes we used recombinant fusion protein and cationic niosome as a gene carrier. A multi-domain fusion protein including nuclear localization motif (NLS) and two DNA-binding (Mu) domains, namely NLS-Mu-Mu (NMM) has been designed, cloned and expressed in E. coli DE3 strain. Afterward, the interested protein was purified by affinity chromatography. Binary vectors based on protein/DNA and ternary vectors based on protein/DNA/niosome were prepared. Protamine was used as a control. DNA condensing properties of NMM and protamine were evaluated by various experiments. Furthermore, we examined cytotoxicity, hemolysis and transfection potential of the binary and ternary complexes in HEK293T and MCF-7 cell lines. Protamine and Lipofectamine™2000 were used as positive controls, correspondingly. The recombinant NMM was expressed and purified successfully and DNA was condensed efficiently at charge ratios that were not harmful to cells. Peptidoplexes showed transfection efficiency (TE) but ternary complexes had higher TE. Additionally, NMM ternary complex was more efficient compared to protamine ternary vectors. Our results showed that niosomal ternary vector of NMM is a promising non-viral gene carrier to achieve an effective and safe carrier system for gene therapy.
非病毒基因传递方法由于在人类基因治疗中的安全性和简便性而被认为是可行的。由于阳离子肽和脂质体的使用代表了基因传递目的的有前途的方法,因此我们使用重组融合蛋白和阳离子脂质体作为基因载体。设计、克隆并在大肠杆菌 DE3 菌株中表达了一种包含核定位基序 (NLS) 和两个 DNA 结合 (Mu) 结构域的多功能融合蛋白,即 NLS-Mu-Mu (NMM)。然后,通过亲和层析纯化感兴趣的蛋白质。制备了基于蛋白/DNA 的二元载体和基于蛋白/DNA/脂质体的三元载体。鱼精蛋白被用作对照。通过各种实验评估了 NMM 和鱼精蛋白的 DNA 凝聚特性。此外,我们在 HEK293T 和 MCF-7 细胞系中检查了二元和三元复合物的细胞毒性、溶血和转染潜力。相应地,使用鱼精蛋白和 Lipofectamine™2000 作为阳性对照。重组 NMM 成功表达和纯化,并且 DNA 在不会对细胞造成伤害的电荷比下有效浓缩。肽复合物显示出转染效率 (TE),但三元复合物具有更高的 TE。此外,与鱼精蛋白三元载体相比,NMM 三元复合物更有效。我们的结果表明,NMM 的脂质体三元载体是一种有前途的非病毒基因载体,可实现有效的和安全的基因治疗载体系统。