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Droplet-based bisulfite sequencing for high-throughput profiling of single-cell DNA methylomes.


ABSTRACT: Genome-wide DNA methylation profile, or DNA methylome, is a critical component of the overall epigenomic landscape that modulates gene activities and cell fate. Single-cell DNA methylomic studies offer unprecedented resolution for detecting and profiling cell subsets based on methylomic features. However, existing single-cell methylomic technologies are all based on use of tubes or well plates and these platforms are not easily scalable for handling a large number of single cells. Here we demonstrate a droplet-based microfluidic technology, Drop-BS, to construct single-cell bisulfite sequencing libraries for DNA methylome profiling. Drop-BS takes advantage of the ultrahigh throughput offered by droplet microfluidics to prepare bisulfite sequencing libraries of up to 10,000 single cells within 2 d. We applied the technology to profile mixed cell lines, mouse and human brain tissues to reveal cell type heterogeneity. Drop-BS will pave the way for single-cell methylomic studies requiring examination of a large cell population.

SUBMITTER: Zhang Q 

PROVIDER: S-EPMC10245959 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Droplet-based bisulfite sequencing for high-throughput profiling of single-cell DNA methylomes.

Zhang Qiang Q   Ma Sai S   Liu Zhengzhi Z   Zhu Bohan B   Zhou Zirui Z   Li Gaoshan G   Meana J Javier JJ   González-Maeso Javier J   Lu Chang C  

bioRxiv : the preprint server for biology 20230528


Genome-wide DNA methylation profile, or DNA methylome, is a critical component of the overall epigenomic landscape that modulates gene activities and cell fate. Single-cell DNA methylomic studies offer unprecedented resolution for detecting and profiling cell subsets based on methylomic features. However, existing single-cell methylomic technologies are all based on use of tubes or well plates and these platforms are not easily scalable for handling a large number of single cells. Here we demons  ...[more]

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