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人群水平单细胞基因组学揭示了系统性幼年特发性关节炎中的保守基因程序。

Population-level single-cell genomics reveals conserved gene programs in systemic juvenile idiopathic arthritis.

机构信息

Division of Rheumatology and.

Division of Biomedical Informatics, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, USA.

出版信息

J Clin Invest. 2023 Nov 15;133(22):e166741. doi: 10.1172/JCI166741.

Abstract

Systemic autoimmune and autoinflammatory diseases are characterized by genetic and cellular heterogeneity. While current single-cell genomics methods provide insights into known disease subtypes, these analysis methods do not readily reveal novel cell-type perturbation programs shared among distinct patient subsets. Here, we performed single-cell RNA-Seq of PBMCs of patients with systemic juvenile idiopathic arthritis (SJIA) with diverse clinical manifestations, including macrophage activation syndrome (MAS) and lung disease (LD). We introduced two new computational frameworks called UDON and SATAY-UDON, which define patient subtypes based on their underlying disrupted cellular programs as well as associated biomarkers or clinical features. Among twelve independently identified subtypes, this analysis uncovered what we believe to be a novel complement and interferon activation program identified in SJIA-LD monocytes. Extending these analyses to adult and pediatric lupus patients found new but also shared disease programs with SJIA, including interferon and complement activation. Finally, supervised comparison of these programs in a compiled single-cell pan-immune atlas of over 1,000 healthy donors found a handful of normal healthy donors with evidence of early inflammatory activation in subsets of monocytes and platelets, nominating possible biomarkers for early disease detection. Thus, integrative pan-immune single-cell analysis resolved what we believe to be new conserved gene programs underlying inflammatory disease pathogenesis and associated complications.

摘要

系统性自身免疫和自身炎症性疾病的特征是遗传和细胞异质性。虽然目前的单细胞基因组学方法提供了对已知疾病亚型的深入了解,但这些分析方法不容易揭示不同患者亚群之间共享的新型细胞类型扰动程序。在这里,我们对具有不同临床表现的全身性幼年特发性关节炎 (SJIA) 患者的 PBMC 进行了单细胞 RNA-Seq 分析,包括巨噬细胞活化综合征 (MAS) 和肺部疾病 (LD)。我们引入了两种新的计算框架,称为 UDON 和 SATAY-UDON,它们基于潜在的细胞程序失调以及相关的生物标志物或临床特征来定义患者亚型。在十二个独立鉴定的亚型中,这项分析揭示了我们认为在 SJIA-LD 单核细胞中发现的一种新的补体和干扰素激活程序。将这些分析扩展到成人和儿科狼疮患者,发现了与 SJIA 具有新的但也具有共享的疾病程序,包括干扰素和补体激活。最后,在超过 1000 名健康供体的单细胞泛免疫图谱的综合比较中,发现了少数几个正常健康供体的单核细胞和血小板中存在亚群的早期炎症激活证据,这提名了可能用于早期疾病检测的生物标志物。因此,整合的泛免疫单细胞分析解决了我们认为是炎症性疾病发病机制和相关并发症的新保守基因程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d7a/10645394/b7bebea6e39f/jci-133-166741-g061.jpg

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