Jekhmane Shehrazade, de Haas Rob, Paulino da Silva Filho Omar, van Asbeck Alexander H, Favretto Marco Emanuele, Hernandez Garcia Armando, Brock Roland, de Vries Renko
1 Physical Chemistry and Soft Matter, Wageningen University , Wageningen, the Netherlands .
2 Department of Biochemistry, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center , Nijmegen, the Netherlands .
Nucleic Acid Ther. 2017 Jun;27(3):159-167. doi: 10.1089/nat.2016.0660. Epub 2017 Feb 21.
RNA has enormous potential as a therapeutic, yet, the successful application depends on efficient delivery strategies. In this study, we demonstrate that a designed artificial viral coat protein, which self-assembles with DNA to form rod-shaped virus-like particles (VLPs), also encapsulates and protects mRNA encoding enhanced green fluorescent protein (EGFP) and luciferase, and yields cellular expression of these proteins. The artificial viral coat protein consists of an oligolysine (K) for binding to the oligonucleotide, a silk protein-like midblock S = (GAGAGAGQ) that self-assembles into stiff rods, and a long hydrophilic random coil block C that shields the nucleic acid cargo from its environment. With mRNA, the C-S-K protein coassembles to form rod-shaped VLPs each encapsulating about one to five mRNA molecules. Inside the rod-shaped VLPs, the mRNAs are protected against degradation by RNAses, and VLPs also maintain their shape following incubation with serum. Despite the lack of cationic surface charge, the mRNA VLPs transfect cells with both EGFP and luciferase, although with a much lower efficiency than obtained by a lipoplex transfection reagent. The VLPs have a negligible toxicity and minimal hemolytic activity. Our results demonstrate that VLPs yield efficient packaging and shielding of mRNA and create the basis for implementation of additional virus-like functionalities to improve transfection and cell specificity, such as targeting functionalities.
RNA作为一种治疗手段具有巨大潜力,然而,其成功应用取决于有效的递送策略。在本研究中,我们证明一种设计的人工病毒衣壳蛋白,它与DNA自组装形成棒状病毒样颗粒(VLP),也能包裹并保护编码增强型绿色荧光蛋白(EGFP)和荧光素酶的mRNA,并使这些蛋白在细胞中表达。人工病毒衣壳蛋白由用于与寡核苷酸结合的寡聚赖氨酸(K)、自组装成硬棒的丝蛋白样中间块S =(GAGAGAGQ)以及将核酸货物与周围环境隔离的长亲水性无规卷曲块C组成。与mRNA一起,C-S-K蛋白共同组装形成棒状VLP,每个VLP包裹约一到五个mRNA分子。在棒状VLP内部,mRNA受到RNA酶的保护而不被降解,并且VLP在与血清孵育后也能保持其形状。尽管缺乏阳离子表面电荷,mRNA VLP仍能转染表达EGFP和荧光素酶的细胞,尽管其效率远低于脂质体转染试剂。VLP的毒性可忽略不计,溶血活性极小。我们的结果表明,VLP能有效地包装和保护mRNA,并为实现额外的病毒样功能以提高转染和细胞特异性(如靶向功能)奠定了基础。