Quantification of disease-associated RNA tandem repeats by nanopore sensing

G Gerardo Patiño-Guillén J Jovan Pesovic M Marko Panić M Max Earle A Anastasija Ninković S Sergiu Petrusca D Dusanka Savic-Pavicevic U Ulrich F. Keyser F Filip Bošković (Howard Hughes Medical Institute, Department of Chemistry)

Abstract

Abstract Short tandem repeat expansions underlie a class of neurological and neuromuscular diseases known as repeat expansion disorders, yet the precise characterisation of these repeats remains technically challenging. Conventional amplification-based methods fail to resolve repeat length accurately due to amplification bias and sequence homogeneity. Here, we present a single-molecule nanopore-based strategy that enables direct quantification of tandem repeats in native RNA. By assembling RNA:DNA nanostructures that encode specific repeat number, we achieve repeat size discrimination with a resolution of 18 nucleotides. Using tandem repeat-containing RNA, we successfully detect and discriminate disease-relevant repeat lengths associated with myotonic dystrophy types 1 (DM1) and 2 (DM2), and congenital central hypoventilation syndrome-1. Finally, we apply our method to total RNA extracted from a DM1 human cell line model, demonstrating its compatibility with complex biological samples. Our approach offers a platform for studying repeat expansion biology at the single-molecule level, with broad implications for diagnostics, clinical research and multiplexed repeat profiling.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 08, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

G

Gerardo Patiño-Guillén

J

Jovan Pesovic

M

Marko Panić

M

Max Earle

A

Anastasija Ninković

S

Sergiu Petrusca

D

Dusanka Savic-Pavicevic

U

Ulrich F. Keyser

F

Filip Bošković

Howard Hughes Medical Institute, Department of Chemistry