MUTE-Seq: An Ultrasensitive Method for Detecting Low-Frequency Mutations in cfDNA With Engineered Advanced-Fidelity FnCas9

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초록

In this study, we present the development of the Mutation tagging by CRISPR-based Ultra-precise Targeted Elimination in Sequencing (MUTE-Seq) method. We engineered a highly precise advanced-fidelity FnCas9 variant, named FnCas9-AF2, to effectively discriminate single-base mismatches at all positions of the single guide RNA (sgRNA) target sequences. FnCas9-AF2 exhibited significantly lower off-target effects compared to existing high-fidelity CRISPR-Cas9 variants. MUTE-Seq leverages FnCas9-AF2 for the enrichment of mutant DNA through the exclusive cleavage of perfectly matched wild-type DNA, allowing for sensitive detection of low-frequency cancer-associated mutant alleles. MUTE-Seq enabled sensitive monitoring of minimal residual disease (MRD) from the bone marrow of patients with Acute Myeloid Leukemia (AML). Furthermore, MUTE-Seq was applied in a multiplexed manner on cell-free DNA (cfDNA) from patients diagnosed with non-small cell lung cancer (NSCLC) and pancreatic cancer. This approach demonstrated a significant improvement in the sensitivity of simultaneous mutant detection and highlighted its clinical utility for early-stage cancer patients with extremely low levels of circulating tumor DNA (ctDNA). We anticipate that the FnCas9-AF2-based MUTE-Seq could offer a valuable clinical tool to facilitate improved molecular diagnosis, prognosis evaluation, and treatment planning for cancers in various stages. © 2025 Elsevier B.V., All rights reserved.

키워드

Cell-free Dna; Circulating Tumor Dna; Crispr/cas9; Fncas9; Liquid Biopsy; Biopsy; Bone; Diseases; Dna; Genes; Molecular Biology; Patient Monitoring; Rna; All Positions; Cell-free; Cell-free Dna; Circulating Tumor Dna; Crispr/cas9; Fncas9; Liquid Biopsy; Lower Frequencies; Single-base Mismatch; Ultrasensitive; Tumors; CIRCULATING TUMOR DNA; CELL-FREE DNA; NUCLEASE; SCRISPR; QUANTIFICATION; CHALLENGES; RARE; CAS9; NGS
제목
MUTE-Seq: An Ultrasensitive Method for Detecting Low-Frequency Mutations in cfDNA With Engineered Advanced-Fidelity FnCas9
저자
Ye, Sunghyeok; Kim, Jinsoo; Kim, Myungshin; Kim, Ki-yeon; Won, Yoon-ho; Park, Taegun; An, Sungjae; Jeong, Haerin; Chung, Hee-joon; Lee, In-seon; Kang, Myoung Hee; Kang, ChanYoung; Kim, MiYoung; Chung, JaeHo; Gim, JeongAn; Hwang, Woochang; Kim, Yonggoo; Kim, SongCheol; Lee, SungHo; Hur, Junho K; Hur, Junseok W
DOI
10.1002/adma.202505208
발행일
2025-11
유형
Article
저널명
Advanced Materials
권
37
호
47