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FOCAS: Transcriptome-wide screening of individual m6A sites functionally dissects epitranscriptomic control of gene
Xinning Zhang1, Yifan Zhang1, Xinyu Liu1
1State Key Laboratory of Gene Function and Modulation Research, School of Life Sciences, Peking-Tsinghua Center for Life Sciences, Peking University, Beijing 100871, China; Beijing Advanced Center of RNA Biology (BEACON), Peking University, Beijing 100871, China.
Abstract:
Although N6-methyladenosine (m6A) is a pervasive RNA modification essential for gene regulation, dissecting the functions of individual m6A sites remains technically challenging. To overcome this, we developed functional m6A sites detection by CRISPR-dCas13b-FTO screening (FOCAS), a CRISPR-dCas13b-based platform enabling high-throughput, site-specific functional screening of m6A. Applying FOCAS to four human cancer cell lines identified 4,475 m6A-regulated genes influencing cell fitness via both mRNAs and non-coding RNAs (ncRNAs), many of which are newly linked to cancer and exhibit dynamic developmental expression. FOCAS uncovered context-dependent and reader-specific effects of m6A within the same gene, revealing its intricate regulatory logic. We further uncovered universal and cell-type-specific m6A patterns, with unique sites enriched in ncRNAs and universal ones in transcription-related genes. In SMMC-7721 cells, we identified m6A-regulated transcriptional networks that demonstrated extensive epitranscriptome-transcriptome crosstalk. Overall, this study established a powerful, unbiased approach for the functional dissection of m6A, advancing the understanding of its complexity and therapeutic relevance in cancers.
Insights
We developed FOCAS, a CRISPR-based tool, to screen N6-methyladenosine (m6A) RNA modification sites. This method identified thousands of m6A-regulated genes impacting cancer cell fitness and revealed complex regulatory roles.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- N6-methyladenosine (m6A) is a crucial RNA modification for gene regulation.
- Dissecting the functional roles of specific m6A sites is technically challenging.
Purpose of the Study:
- To develop a high-throughput, site-specific screening platform for functional m6A analysis.
- To investigate the role of m6A in cancer cell fitness and gene regulation.
Main Methods:
- Developed functional m6A sites detection by CRISPR-dCas13b-FTO screening (FOCAS).
- Applied FOCAS to four human cancer cell lines for large-scale screening.
Main Results:
- Identified 4,475 m6A-regulated genes affecting cell fitness through mRNAs and ncRNAs.
- Uncovered context-dependent m6A effects and distinct universal/cell-type-specific m6A patterns.
- Revealed m6A-regulated transcriptional networks and epitranscriptome-transcriptome crosstalk in SMMC-7721 cells.
Conclusions:
- FOCAS provides a powerful, unbiased approach for functional m6A site dissection.
- This study advances the understanding of m6A complexity and its therapeutic relevance in cancer.
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