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Single-cell characterization of CRISPR-modified transcript isoforms with nanopore sequencing.


ABSTRACT: We developed a single-cell approach to detect CRISPR-modified mRNA transcript structures. This method assesses how genetic variants at splicing sites and splicing factors contribute to alternative mRNA isoforms. We determine how alternative splicing is regulated by editing target exon-intron segments or splicing factors by CRISPR-Cas9 and their consequences on transcriptome profile. Our method combines long-read sequencing to characterize the transcript structure and short-read sequencing to match the single-cell gene expression profiles and gRNA sequence and therefore provides targeted genomic edits and transcript isoform structure detection at single-cell resolution.

SUBMITTER: Kim HS 

PROVIDER: S-EPMC8647366 | biostudies-literature | 2021 Dec

REPOSITORIES: biostudies-literature

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Single-cell characterization of CRISPR-modified transcript isoforms with nanopore sequencing.

Kim Heon Seok HS   Grimes Susan M SM   Hooker Anna C AC   Lau Billy T BT   Ji Hanlee P HP  

Genome biology 20211206 1


We developed a single-cell approach to detect CRISPR-modified mRNA transcript structures. This method assesses how genetic variants at splicing sites and splicing factors contribute to alternative mRNA isoforms. We determine how alternative splicing is regulated by editing target exon-intron segments or splicing factors by CRISPR-Cas9 and their consequences on transcriptome profile. Our method combines long-read sequencing to characterize the transcript structure and short-read sequencing to mat  ...[more]

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