Multidimensional third-generation sequencing of modified DNA bases allows interrogation of complex biological systems

S Serena S. David B Brendan A. Pacheco K Kensei Kishimoto S Sam Vantine K Kai Hu H Haibo Liu (Discovery & Development Sciences) D Diana L. Davis H Hoang Tran B Benjamin F. Sallis L Levi Ali C Cole M. Haynes B Beth A. McCormick L Lihua Julie Zhu (Department of Molecular, Cell, and Cancer Biology, University of Massachusetts Chan Medical School) W William A. Flavahan

Abstract

Abstract DNA exists biologically as a highly dynamic macromolecular complex subject to myriad chemical modifications that alter its physiological interpretation, yet most sequencing technologies only measure Watson-Crick base pairing interactions. Third-generation sequencing technologies can directly detect novel and modified bases, yet the difficulty and cost of training these techniques for each novel base has so far limited this potential. Here, we present a method based on barcoded split-pool synthesis to generate reference standard oligonucleotides allowing novel base sequencing. Using novel base detection, we perform multidimensional sequencing to retrieve information, both physiologically stored and experimentally encoded, from DNA, allowing us to characterize the preferential replication of deleterious mitochondrial genome mutations, the infection dynamics of a host-pathogen model, and the effect of chemotherapy on cancer cell DNA at the single molecule level. The low cost and experimental simplicity of this method make this approach widely accessible to the research community, enabling complex experimental interrogation across the biological sciences.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

S

Serena S. David

B

Brendan A. Pacheco

K

Kensei Kishimoto

S

Sam Vantine

K

Kai Hu

H

Haibo Liu

Discovery & Development Sciences

D

Diana L. Davis

H

Hoang Tran

B

Benjamin F. Sallis

L

Levi Ali

C

Cole M. Haynes

B

Beth A. McCormick

L

Lihua Julie Zhu

Department of Molecular, Cell, and Cancer Biology, University of Massachusetts Chan Medical School

W

William A. Flavahan