A rhythmically pulsing leaf-spring DNA-origami nanoengine that drives a passive follower

Author:

Centola MathiasORCID,Poppleton ErikORCID,Ray SujayORCID,Centola MartinORCID,Welty RobbORCID,Valero JuliánORCID,Walter Nils G.ORCID,Šulc PetrORCID,Famulok MichaelORCID

Abstract

AbstractMolecular engineering seeks to create functional entities for modular use in the bottom-up design of nanoassemblies that can perform complex tasks. Such systems require fuel-consuming nanomotors that can actively drive downstream passive followers. Most artificial molecular motors are driven by Brownian motion, in which, with few exceptions, the generated forces are non-directed and insufficient for efficient transfer to passive second-level components. Consequently, efficient chemical-fuel-driven nanoscale driver–follower systems have not yet been realized. Here we present a DNA nanomachine (70 nm × 70 nm × 12 nm) driven by the chemical energy of DNA-templated RNA-transcription-consuming nucleoside triphosphates as fuel to generate a rhythmic pulsating motion of two rigid DNA-origami arms. Furthermore, we demonstrate actuation control and the simple coupling of the active nanomachine with a passive follower, to which it then transmits its motion, forming a true driver–follower pair.

Funder

Rheinische Friedrich-Wilhelms-Universität Bonn

Max-Planck-Gesellschaft

Alexander von Humboldt-Stiftung

National Science Foundation

ASU | Biodesign Institute, Arizona State University

University of Michigan

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,General Materials Science,Biomedical Engineering,Atomic and Molecular Physics, and Optics,Bioengineering

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