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Developing artificial cytoskeletons using RNA origami-based nanotubes

delete2026-02-28
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PRE
AI
T
Tanvir Ahmed *
K
Kazi Tasnuva Alam
DOI:10.1016/j.pbiomolbio.2026.02.006delete
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Abstract

Abstract

En 中文
The cytoskeleton plays a fundamental role in maintaining cellular architecture, enabling intracellular transport, and facilitating mechanical responsiveness. Mimicking this intricate biological framework through synthetic means offers promising prospects for nanotechnology, synthetic biology, and therapeutic applications. Recent advances in nucleic acid nanotechnology have positioned RNA origami as a versatile and programmable scaffold for constructing nanoscale architectures. This review explores the emerging concept of engineering artificial cytoskeletons using RNA origami-based nanotubes. We discuss the unique structural and functional advantages of RNA over DNA, including its ability to fold co-transcriptionally, form complex tertiary interactions, and interface with cellular machinery. Key strategies for designing and assembling RNA nanotubes that mimic microtubules and actin filaments are explored, along with efforts to control their length, stiffness, and spatial organization. Furthermore, we highlight the potential for dynamic remodeling and responsiveness through ligand-binding motifs, ribozymes, and RNA-protein interactions. Applications in intracellular scaffolding, targeted cargo transport, and as platforms for synthetic cell development are also reviewed. While significant challenges remain, including stability in vivo and efficient delivery, RNA origami offers a transformative toolkit for constructing programmable, biomimetic cytoskeletal networks. This review aims to provide a foundational understanding of the field and inspire future developments at the intersection of RNA nanotechnology and synthetic cell engineering.
Keywords:
RNA origami
artificial cytoskeleton
nanotubes
synthetic biology
cytoskeletal mimics

Journal

Progress in Biophysics and Molecular Biology cover
Progress in Biophysics and Molecular Biology
IF:
4.5
Papers:
1.8K
Citations:
4.7K

Organization

N
north south university
Scholars:
50
Papers: 30
Citations: 0
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