Reconstructing the three-dimensional architecture of extrachromosomal DNA with ec3D

B Biswanath Chowdhury K Kaiyuan Zhu C Chaohui Li (Faculty of Engineering, Department of Material Science) J Jessica Alsing J Jens Luebeck M Maria E. Stefanova O Owen S. Chapman K Katerina Kraft S Shu Zhang J Jun Yi Stanley Lim Y Yipeng Xie Y Yoon Jung Kim (Children’s Medical Center Research Institute, University of Texas Southwestern Medical Center, Dallas, TX, USA.) S Sihan Wu (Children’s Medical Center Research Institute, University of Texas Southwestern Medical Center) L Lukas Chavez G Guy Nir A Anton G. Henssen P Paul S. Mischel H Howard Y. Chang V Vineet Bafna

Abstract

Abstract Extrachromosomal DNAs (ecDNAs) are circular DNA molecules prevalent in human cancers that drive tumor evolution and drug resistance. Their circular topology, which disrupts topological domains and rewires regulatory circuits, has typically been studied via pairwise interactions. Here we develop ec3D, a computational method for reconstructing three-dimensional ecDNA structures from Hi-C data. Given a candidate ecDNA sequence and whole-genome Hi-C data, ec3D reconstructs spatial structures by maximizing the Poisson likelihood of observed interactions. We validate ec3D using simulated structures, previously characterized cancer cell lines, and microscopy imaging. Our reconstructions reveal that ecDNAs occupy spherical configurations and mediate unique long-range regulatory interactions involved in gene regulation. Through algorithmic innovations, ec3D can resolve complex structures with duplicated segments, identify multi-way interactions, and identify potential intermolecular (trans) interactions. Our findings provide insights into how ecDNA’s spatial organization bypasses normal chromosomal constraints and contributes to increased oncogene expression.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 20, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

B

Biswanath Chowdhury

K

Kaiyuan Zhu

C

Chaohui Li

Faculty of Engineering, Department of Material Science

J

Jessica Alsing

J

Jens Luebeck

M

Maria E. Stefanova

O

Owen S. Chapman

K

Katerina Kraft

S

Shu Zhang

J

Jun Yi Stanley Lim

Y

Yipeng Xie

Y

Yoon Jung Kim

Children’s Medical Center Research Institute, University of Texas Southwestern Medical Center, Dallas, TX, USA.

S

Sihan Wu

Children’s Medical Center Research Institute, University of Texas Southwestern Medical Center

L

Lukas Chavez

G

Guy Nir

A

Anton G. Henssen

P

Paul S. Mischel

H

Howard Y. Chang

V

Vineet Bafna