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Updated: Sep 6, 2025

Capturing Chromosome Conformation Across Length Scales
Published on: January 20, 2023
Learning representations of chromatin contacts using a recurrent neural network identifies genomic drivers of
Kevin B Dsouza1, Alexandra Maslova2, Ediem Al-Jibury3,4
1Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, Canada. kevin@ece.ubc.ca.
Abstract:
Despite the availability of chromatin conformation capture experiments, discerning the relationship between the 1D genome and 3D conformation remains a challenge, which limits our understanding of their affect on gene expression and disease. We propose Hi-C-LSTM, a method that produces low-dimensional latent representations that summarize intra-chromosomal Hi-C contacts via a recurrent long short-term memory neural network model. We find that these representations contain all the information needed to recreate the observed Hi-C matrix with high accuracy, outperforming existing methods. These representations enable the identification of a variety of conformation-defining genomic elements, including nuclear compartments and conformation-related transcription factors. They furthermore enable in-silico perturbation experiments that measure the influence of cis-regulatory elements on conformation.
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