Grimes Karen, Jeong Hyobin, Amoah Amanda, Xu Nuo, Niemann Julian, Raeder Benjamin, Hasenfeld Patrick, Stober Catherine, Rausch Tobias, Benito Eva, Jann Johann-Christoph, Nowak Daniel, Emini Ramiz, Hoenicka Markus, Liebold Andreas, Ho Anthony, Shuai Shimin, Geiger Hartmut, Sanders Ashley D, Korbel Jan O
Genome Biology Unit, European Molecular Biology Laboratory, Heidelberg, Germany.
Department of Systems Biology, College of Life Science and Biotechnology, Yonsei University, Seoul, Republic of Korea.
Nat Genet. 2024 Jun;56(6):1134-1146. doi: 10.1038/s41588-024-01754-2. Epub 2024 May 28.
The functional impact and cellular context of mosaic structural variants (mSVs) in normal tissues is understudied. Utilizing Strand-seq, we sequenced 1,133 single-cell genomes from 19 human donors of increasing age, and discovered the heterogeneous mSV landscapes of hematopoietic stem and progenitor cells. While mSVs are continuously acquired throughout life, expanded subclones in our cohort are confined to individuals >60. Cells already harboring mSVs are more likely to acquire additional somatic structural variants, including megabase-scale segmental aneuploidies. Capitalizing on comprehensive single-cell micrococcal nuclease digestion with sequencing reference data, we conducted high-resolution cell-typing for eight hematopoietic stem and progenitor cells. Clonally expanded mSVs disrupt normal cellular function by dysregulating diverse cellular pathways, and enriching for myeloid progenitors. Our findings underscore the contribution of mSVs to the cellular and molecular phenotypes associated with the aging hematopoietic system, and establish a foundation for deciphering the molecular links between mSVs, aging and disease susceptibility in normal tissues.
正常组织中镶嵌结构变异(mSVs)的功能影响和细胞背景尚未得到充分研究。利用链特异性测序(Strand-seq),我们对来自19名年龄递增的人类供体的1133个单细胞基因组进行了测序,并发现了造血干细胞和祖细胞的异质性mSV图谱。虽然mSVs在整个生命过程中不断获得,但我们队列中扩增的亚克隆仅限于60岁以上的个体。已经携带mSVs的细胞更有可能获得额外的体细胞结构变异,包括兆碱基规模的节段性非整倍体。利用具有测序参考数据的全面单细胞微球菌核酸酶消化,我们对八种造血干细胞和祖细胞进行了高分辨率细胞分型。克隆扩增的mSVs通过失调多种细胞途径和富集髓系祖细胞来破坏正常细胞功能。我们的研究结果强调了mSVs对与衰老造血系统相关的细胞和分子表型的贡献,并为破译mSVs、衰老和正常组织中疾病易感性之间的分子联系奠定了基础。