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Hi-Cformer enables multiscale chromatin contact map modeling for single-cell Hi-C data analysis.

Created on 29 Aug 2026

Authors

Xiaoqing Wu, Zian Wang, Rui Jiang, Xiaoyang Chen

Published in

Science advances. Volume 12. Issue 35. Pages eaeg0134. Aug 28, 2026. Epub Aug 28, 2026.

Abstract

Single-cell Hi-C enables the characterization of three-dimensional chromatin organization in individual cells but remains challenging to analyze due to extreme sparsity and uneven contact distributions across genomic distances. These properties result in strong near-diagonal signals and complex multiscale interaction patterns that hinder effective modeling. Here, we present Hi-Cformer, a transformer-based method that simultaneously models multiscale blocks of single-cell chromatin contact maps through a specialized attention mechanism designed to capture dependencies across genomic regions and scales. Hi-Cformer learns robust low-dimensional cell representations from sparse single-cell Hi-C data, leading to improved separation of cell types compared to existing methods. In addition, Hi-Cformer accurately imputes chromatin interaction signals associated with cellular heterogeneity, including topologically associating domain-like boundaries and A/B compartments. Leveraging the learned embeddings, Hi-Cformer further enables accurate and robust cell type annotation across both intra- and inter-dataset scenarios.

PMID:
42664339
Bibliographic data and abstract were imported from PubMed on 29 Aug 2026.

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