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Shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation CpG methylation sequencing at single nucleotide resolution

DNA methylation is essential for a wide variety of biological processes, yet the development of a highly efficient and robust technology remains a challenge for routine single-cell analysis. We developed a multiplex scalable single-cell reduced representation bisulfite sequencing (msRRBS) technology...

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Autores principales: Mai, Liyao, Wen, Zebin, Zhang, Yulong, Gao, Yu, Lin, Guanchuan, Lian, Zhiwei, Yang, Xiang, Zhou, Jingjing, Lin, Xianwei, Luo, Chaochao, Peng, Wanwan, Chen, Caiming, Peng, Jiajia, Liu, Duolian, Marjani, Sadie L, Tao, Qian, Cui, Yongping, Zhang, Junxiao, Wu, Xuedong, Weissman, Sherman M, Pan, Xinghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10681715/
https://www.ncbi.nlm.nih.gov/pubmed/37870443
http://dx.doi.org/10.1093/nar/gkad892
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author Mai, Liyao
Wen, Zebin
Zhang, Yulong
Gao, Yu
Lin, Guanchuan
Lian, Zhiwei
Yang, Xiang
Zhou, Jingjing
Lin, Xianwei
Luo, Chaochao
Peng, Wanwan
Chen, Caiming
Peng, Jiajia
Liu, Duolian
Marjani, Sadie L
Tao, Qian
Cui, Yongping
Zhang, Junxiao
Wu, Xuedong
Weissman, Sherman M
Pan, Xinghua
author_facet Mai, Liyao
Wen, Zebin
Zhang, Yulong
Gao, Yu
Lin, Guanchuan
Lian, Zhiwei
Yang, Xiang
Zhou, Jingjing
Lin, Xianwei
Luo, Chaochao
Peng, Wanwan
Chen, Caiming
Peng, Jiajia
Liu, Duolian
Marjani, Sadie L
Tao, Qian
Cui, Yongping
Zhang, Junxiao
Wu, Xuedong
Weissman, Sherman M
Pan, Xinghua
author_sort Mai, Liyao
collection PubMed
description DNA methylation is essential for a wide variety of biological processes, yet the development of a highly efficient and robust technology remains a challenge for routine single-cell analysis. We developed a multiplex scalable single-cell reduced representation bisulfite sequencing (msRRBS) technology. It allows cell-specific barcoded DNA fragments of individual cells to be pooled before bisulfite conversion, free of enzymatic modification or physical capture of the DNA ends, and achieves read mapping rates of 62.5 ± 3.9%, covering 60.0 ± 1.4% of CpG islands and 71.6 ± 1.6% of promoters in K562 cells. Its reproducibility is shown in duplicates of bulk cells with close to perfect correlation (R = 0.97–0.99). At a low 1 Mb of clean reads, msRRBS provides highly consistent coverage of CpG islands and promoters, outperforming the conventional methods with orders of magnitude reduction in cost. Here, we use this method to characterize the distinct methylation patterns and cellular heterogeneity of six cell lines, plus leukemia and hepatocellular carcinoma models. Taking 4 h of hands-on time, msRRBS offers a unique, highly efficient approach for dissecting methylation heterogeneity in a variety of multicellular systems.
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spelling pubmed-106817152023-10-23 Shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation CpG methylation sequencing at single nucleotide resolution Mai, Liyao Wen, Zebin Zhang, Yulong Gao, Yu Lin, Guanchuan Lian, Zhiwei Yang, Xiang Zhou, Jingjing Lin, Xianwei Luo, Chaochao Peng, Wanwan Chen, Caiming Peng, Jiajia Liu, Duolian Marjani, Sadie L Tao, Qian Cui, Yongping Zhang, Junxiao Wu, Xuedong Weissman, Sherman M Pan, Xinghua Nucleic Acids Res Methods DNA methylation is essential for a wide variety of biological processes, yet the development of a highly efficient and robust technology remains a challenge for routine single-cell analysis. We developed a multiplex scalable single-cell reduced representation bisulfite sequencing (msRRBS) technology. It allows cell-specific barcoded DNA fragments of individual cells to be pooled before bisulfite conversion, free of enzymatic modification or physical capture of the DNA ends, and achieves read mapping rates of 62.5 ± 3.9%, covering 60.0 ± 1.4% of CpG islands and 71.6 ± 1.6% of promoters in K562 cells. Its reproducibility is shown in duplicates of bulk cells with close to perfect correlation (R = 0.97–0.99). At a low 1 Mb of clean reads, msRRBS provides highly consistent coverage of CpG islands and promoters, outperforming the conventional methods with orders of magnitude reduction in cost. Here, we use this method to characterize the distinct methylation patterns and cellular heterogeneity of six cell lines, plus leukemia and hepatocellular carcinoma models. Taking 4 h of hands-on time, msRRBS offers a unique, highly efficient approach for dissecting methylation heterogeneity in a variety of multicellular systems. Oxford University Press 2023-10-23 /pmc/articles/PMC10681715/ /pubmed/37870443 http://dx.doi.org/10.1093/nar/gkad892 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methods
Mai, Liyao
Wen, Zebin
Zhang, Yulong
Gao, Yu
Lin, Guanchuan
Lian, Zhiwei
Yang, Xiang
Zhou, Jingjing
Lin, Xianwei
Luo, Chaochao
Peng, Wanwan
Chen, Caiming
Peng, Jiajia
Liu, Duolian
Marjani, Sadie L
Tao, Qian
Cui, Yongping
Zhang, Junxiao
Wu, Xuedong
Weissman, Sherman M
Pan, Xinghua
Shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation CpG methylation sequencing at single nucleotide resolution
title Shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation CpG methylation sequencing at single nucleotide resolution
title_full Shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation CpG methylation sequencing at single nucleotide resolution
title_fullStr Shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation CpG methylation sequencing at single nucleotide resolution
title_full_unstemmed Shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation CpG methylation sequencing at single nucleotide resolution
title_short Shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation CpG methylation sequencing at single nucleotide resolution
title_sort shortcut barcoding and early pooling for scalable multiplex single-cell reduced-representation cpg methylation sequencing at single nucleotide resolution
topic Methods
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10681715/
https://www.ncbi.nlm.nih.gov/pubmed/37870443
http://dx.doi.org/10.1093/nar/gkad892
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