Author:
Xing Qiao Rui,Farran Chadi A El,Zeng Ying Ying,Yi Yao,Warrier Tushar,Gautam Pradeep,Collins James J.,Xu Jian,Dröge Peter,Koh Cheng-Gee,Li Hu,Zhang Li-Feng,Loh Yuin-Han
Abstract
Joint profiling of transcriptome and chromatin accessibility within single cells allows for the deconstruction of the complex relationship between transcriptional states and upstream regulatory programs determining different cell fates. Here, we developed an automated method with high sensitivity, assay for single-cell transcriptome and accessibility regions (ASTAR-seq), for simultaneous measurement of whole-cell transcriptome and chromatin accessibility within the same single cell. To show the utility of ASTAR-seq, we profiled 384 mESCs under naive and primed pluripotent states as well as a two-cell like state, 424 human cells of various lineage origins (BJ, K562, JK1, and Jurkat), and 480 primary cord blood cells undergoing erythroblast differentiation. With the joint profiles, we configured the transcriptional and chromatin accessibility landscapes of discrete cell states, uncovered linked sets of cis-regulatory elements and target genes unique to each state, and constructed interactome and transcription factor (TF)–centered upstream regulatory networks for various cell states.
Funder
National Instiutes of Health
Glenn Foundation for Medical Research
National Research Foundation
Agency for Science, Technology and Research
Singapore National Research Foundation under its Cooperative Basic Research
Singapore Ministry of Health's National Medical Research Council
Publisher
Cold Spring Harbor Laboratory
Subject
Genetics (clinical),Genetics
Cited by
55 articles.
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