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초록
Somatic structural variants (SVs) are widespread in cancer, but their impact on disease evolution is understudied due to a lack of methods to directly characterize their functional consequences. We present a computational method, scNOVA, which uses Strand-seq to perform haplotype-aware integration of SV discovery and molecular phenotyping in single cells by using nucleosome occupancy to infer gene expression as a readout. Application to leukemias and cell lines identifies local effects of copy-balanced rearrangements on gene deregulation, and consequences of SVs on aberrant signaling pathways in subclones. We discovered distinct SV subclones with dysregulated Wnt signaling in a chronic lymphocytic leukemia patient. We further uncovered the consequences of subclonal chromothripsis in T cell acute lymphoblastic leukemia, which revealed c-Myb activation, enrichment of a primitive cell state and informed successful targeting of the subclone in cell culture, using a Notch inhibitor. By directly linking SVs to their functional effects, scNOVA enables systematic single-cell multiomic studies of structural variation in heterogeneous cell populations.
키워드
- 제목
- Functional analysis of structural variants in single cells using Strand-seq
- 저자
- Jeong, Hyobin; Grimes, Karen; Sanders, Ashley D.; Korbel, Jan O.; Rauwolf, Kerstin K.; Bruch, Peter-Martin; Rausch, Tobias; Hasenfeld, Patrick; Benito, Eva; Roider, Tobias; Sabarinathan, Radhakrishnan; Porubsky, David; Herbst, Sophie A.; Erarslan-Uysal, Büşra; Jann, Johann-Christoph; Marschall, Tobias; Nowak, Daniel; Bourquin, Jean-Pierre; Kulozik, Andreas E.; Dietrich, Sascha; Bornhauser, Beat
- 발행일
- 2023-06
- 유형
- Article; Early Access
- 권
- 41
- 호
- 6
- 페이지
- 832 ~ 844