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Single-cell RNA-seq identifies unique transcriptional landscapes of human nucleus pulposus and annulus fibrosus cells

机译:单细胞RNA-SEQ识别人核骨髓和环形纤维细胞细胞的独特转录景观

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摘要

Intervertebral disc (IVD) disease (IDD) is a complex, multifactorial disease. While various aspects of IDD progression have been reported, the underlying molecular pathways and transcriptional networks that govern the maintenance of healthy nucleus pulposus (NP) and annulus fibrosus (AF) have not been fully elucidated. We defined the transcriptome map of healthy human IVD by performing single-cell RNA-sequencing (scRNA-seq) in primary AF and NP cells isolated from non-degenerated lumbar disc. Our systematic and comprehensive analyses revealed distinct genetic architecture of human NP and AF compartments and identified 2,196 differentially expressed genes. Gene enrichment analysis showed that SFRP1, BIRC5, CYTL1, ESM1 and CCNB2 genes were highly expressed in the AF cells; whereas, COL2A1, DSC3, COL9A3, COL11A1, and ANGPTL7 were mostly expressed in the NP cells. Further, functional annotation clustering analysis revealed the enrichment of receptor signaling pathways genes in AF cells, while NP cells showed high expression of genes related to the protein synthesis machinery. Subsequent interaction network analysis revealed a structured network of extracellular matrix genes in NP compartments. Our regulatory network analysis identified FOXM1 and KDM4E as signature transcription factor of AF and NP respectively, which might be involved in the regulation of core genes of AF and NP transcriptome.
机译:椎间盘(IVD)疾病(IDD)是一种复杂的多学习疾病。虽然已经报道了IDD进展的各个方面,但控制了治疗健康髓核(NP)和环纤维(AF)的潜在的分子途径和转录网络尚未完全阐明。我们通过在原发性AF和NP细胞中进行单细胞RNA测序(SCRNA-SEQ)来定义健康人IVD的转录组MAP,从未退化的腰盘分离。我们的系统和综合分析显示了人NP和AF隔间的明显遗传建筑,并确定了2,196个差异表达基因。基因富集分析表明,SFRP1,BIRC5,CYTL1,ESM1和CCNB2基因在AF细胞中高度表达;然而,COL2A1,DSC3,COL9A3,COL11A1和ANGPTL7主要在NP细胞中表达。此外,功能性注释聚类分析揭示了AF细胞中受体信号传导途径基因的富集,而NP细胞显示出与蛋白质合成机械有关的基因的高表达。随后的相互作用网络分析显示NP隔室中细胞外基因基因的结构化网络。我们的监管网络分析分别鉴定了Foxm1和KDM4e作为AF和NP的特征转录因子,这可能参与了AF和NP转录组的核心基因的调节。

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