RRC ID 90152
著者 Marderstein AR, De Zuani M, Moeller R, Bezney J, Padhi EM, Wong S, Coorens THH, Xie Y, Xue H, Montgomery SB, Cvejic A.
タイトル Single-cell multi-omics map of human fetal blood in Down syndrome.
ジャーナル Nature
Abstract Down syndrome predisposes individuals to haematological abnormalities, such as increased number of erythrocytes and leukaemia in a process that is initiated before birth and is not entirely understood1-3. Here, to understand dysregulated haematopoiesis in Down syndrome, we integrated single-cell transcriptomics of over 1.1 million cells with chromatin accessibility and spatial transcriptomics datasets using human fetal liver and bone marrow samples from 3 fetuses with disomy and 15 fetuses with trisomy. We found that differences in gene expression in Down syndrome were dependent on both cell type and environment. Furthermore, we found multiple lines of evidence that haematopoietic stem cells (HSCs) in Down syndrome are 'primed' to differentiate. We subsequently established a Down syndrome-specific map linking non-coding elements to genes in disomic and trisomic HSCs using 10X multiome data. By integrating this map with genetic variants associated with blood cell counts, we discovered that trisomy restructured regulatory interactions to dysregulate enhancer activity and gene expression critical to erythroid lineage differentiation. Furthermore, as mutations in Down syndrome display a signature of oxidative stress4,5, we validated both increased mitochondrial mass and oxidative stress in Down syndrome, and observed that these mutations preferentially fell into regulatory regions of expressed genes in HSCs. Together, our single-cell, multi-omic resource provides a high-resolution molecular map of fetal haematopoiesis in Down syndrome and indicates significant regulatory restructuring giving rise to co-occurring haematological conditions.
巻・号 634(8032)
ページ 104-112
公開日 2024-10-1
DOI 10.1038/s41586-024-07946-4
PII 10.1038/s41586-024-07946-4
PMID 39322663
PMC PMC11446839
MeSH Blood Cell Count Bone Marrow / metabolism Cell Differentiation / genetics Cell Lineage / genetics Chromatin / genetics Chromatin / metabolism Down Syndrome* / blood Down Syndrome* / embryology Down Syndrome* / genetics Down Syndrome* / metabolism Down Syndrome* / pathology Fetal Blood* / cytology Fetal Blood* / metabolism Fetus* / cytology Fetus* / metabolism Gene Expression Profiling Hematopoiesis* / genetics Hematopoietic Stem Cells* / cytology Hematopoietic Stem Cells* / metabolism Hematopoietic Stem Cells* / pathology Humans Liver / embryology Liver / metabolism Mitochondria / metabolism Mitochondria / pathology Multiomics* Mutation Oxidative Stress / genetics Reproducibility of Results Single-Cell Analysis* Transcriptome / genetics Trisomy / genetics
リソース情報
ヒト・動物細胞 HUDEP-2(RCB4557)