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Single-Cell Genomics Unveils Critical Regulators of Th17 Cell Pathogenicity

机译:单细胞基因组学揭示Th17细胞致病性的关键调控因子

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Extensive cellular heterogeneity exists within specific immune-cell subtypes classified as a single lineage, but its molecular underpinnings are rarely characterized at a genomic scale. Here, we use single-cell RNA-seq to investigate the molecular mechanisms governing heterogeneity and pathogenicity of Th17 cells isolated from the central nervous system (CNS) and lymph nodes (LN) at the peak of autoimmune encephalomyelitis (EAE) or differentiated in vitro under either pathogenic or nonpathogenic polarization conditions. Computational analysis relates a spectrum of cellular states in vivo to in-vitro-differentiated Th17 cells and unveils genes governing pathogenicity and disease susceptibility. Using knockout mice, we validate four new genes: Gpr65, Plzp, Toso, and Cd5l (in a companion paper). Cellular heterogeneity thus informs Th17 function in autoimmunity and can identify targets for selective suppression of pathogenic Th17 cells while potentially sparing non-pathogenic tissueprotective ones.
机译:广泛的细胞异质性存在于归类为单一谱系的特定免疫细胞亚型中,但其分子基础很少在基因组规模上表征。在这里,我们使用单细胞RNA-seq来研究在自身免疫性脑脊髓炎(EAE)或体外分化的高峰期从中枢神经系统(CNS)和淋巴结(LN)分离的Th17细胞的异质性和致病性的分子机制。在致病性或非致病性极化条件下。计算分析将体内多种细胞状态与体外分化的Th17细胞相关,并揭示了控制致病性和疾病易感性的基因。使用敲除小鼠,我们验证了四个新基因:Gpr65,Plzp,Toso和Cd51(在随附的论文中)。因此,细胞异质性提示Th17在自身免疫中的功能,并可以确定选择性抑制病原性Th17细胞的靶标,同时可能保留非致病性组织保护性靶标。

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