Algorithmic Design of 3D Wireframe RNA Polyhedra.

Elonen, Antti; Natarajan, Ashwin Karthick; Kawamata, Ibuki; Oesinghaus, Lukas; Mohammed, Abdulmelik; Seitsonen, Jani; Suzuki, Yuki; Simmel, Friedrich C et al. · ACS Nano · 2022

basic_science · Level V

Where this comes from

Abstract

We address the problem of de novo design and synthesis of nucleic acid nanostructures, a challenge that has been considered in the area of DNA nanotechnology since the 1980s and more recently in the area of RNA nanotechnology. Toward this goal, we introduce a general algorithmic design process and software pipeline for rendering 3D wireframe polyhedral nanostructures in single-stranded RNA. To initiate the pipeline, the user creates a model of the desired polyhedron using standard 3D graphic design software. As its output, the pipeline produces an RNA nucleotide sequence whose corresponding RNA primary structure can be transcribed from a DNA template and folded in the laboratory. As case examples, we design and characterize experimentally three 3D RNA nanostructures: a tetrahedron, a triangular bipyramid, and a triangular prism. The design software is openly available and also provides an export of the targeted 3D structure into the <i>oxDNA</i> molecular dynamics simulator for easy simulation and visualization.

Medical subject headings