Journal of the American Chemical Society · 2018 · 110 citations · 35 references
Tissue EngineeringEngineeringMolecular BiologyBiofabricationScaffold DesignsGene DeliveryBiomedical EngineeringSite-specific DeliveryTherapeuticsNanomedicineDrug Delivery SystemCell-based Drug DeliveryPorous Protein CageRational EngineeringMolecular EngineeringCell EngineeringDelivery SystemBiomolecular EngineeringSynthetic BiologyNano-drug DeliveryProtein EngineeringMedicineSirna-loaded Cage
Oligonucleotide therapeutics have transformative potential in modern medicine but are poor drug candidates in themselves unless fitted with compensatory carrier systems. We describe a simple approach to transform a designed porous protein cage into a nucleic acid delivery vehicle. By introducing arginine mutations to the lumenal surface, a positively supercharged capsule is created, which can encapsidate oligonucleotides in vitro with high binding affinity. We demonstrate that the siRNA-loaded cage is taken up by mammalian cells and releases its cargo to induce RNAi and knockdown gene expression. These general concepts could also be applied to alternative scaffold designs, expediting the development of artificial protein cages toward delivery applications.
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Computational Design of Self-Assembling Protein Nanomaterials with Atomic Level Accuracy
Neil P. King, William Sheffler, M.R. Sawaya et al. · Science · 2012 · 669 citations · Full text
Accurate design of megadalton-scale two-component icosahedral protein complexes
Jacob B. Bale, Shane Gonen, Yuxi Liu et al. · Science · 2016 · 601 citations · Full text
International Journal of Biochemistry · 1987 · 600 citations