Tracking single-cell evolution using clock-like chromatin accessibility loci

Yi Zhang, Fangjin Chen, Xinghuan Wang, Jie Fu, Lingao Ju, Gang Wang, Kaiyu Qian, Wan Jin, Yu Xiao, Mengxue Yu
2024-05-09

SCID:  54.1/zbhzuzdp
Single-cell chromatin accessibility sequencing (scATAC-seq) reconstructs developmental trajectory by phenotypic similarity. However, inferring the exact developmental trajectory is challenging. Previous studies showed age-associated DNA methylation (DNAm) changes in specific genomic regions, termed clock-like differential methylation loci (ClockDML). Age-associated DNAm could either result from or result in chromatin accessibility changes at ClockDML. As cells undergo mitosis, the heterogeneity of chromatin accessibility on clock-like loci is reduced, providing a measure of mitotic age. In this study, we developed a method, called EpiTrace, that counts the fraction of opened clock-like loci from scATAC-seq data to determine cell age and perform lineage tracing in various cell lineages and animal species. It shows concordance with known developmental hierarchies, correlates well with DNAm-based clocks and is complementary with mutation-based lineage tracing, RNA velocity and stemness predictions. Applying EpiTrace to scATAC-seq data reveals biological insights with clinically relevant implications, ranging from hematopoiesis, organ development, tumor biology and immunity to cortical gyrification.
Publication Details
Publication Date
2024-05-09
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Yi Zhang
Fangjin Chen
Xinghuan Wang
Jie Fu
Lingao Ju
Gang Wang
Kaiyu Qian
Wan Jin
Yu Xiao
Mengxue Yu
Explore More Research
Use the citation graph to discover related papers and expand your research horizons.
Click any node to explore
Download PDF
100%