Fujian Branch of Shanghai Children's Medical Center Affiliated to Shanghai Jiaotong University School of Medicine, No. 966 Hengyu Road, Jinan, Fuzhou City, Fujian Province, China.
Fujian Children's Hospital, No. 966 Hengyu Road, Jinan, Fuzhou City, Fujian Province, China.
Dis Markers. 2022 Jun 1;2022:1666240. doi: 10.1155/2022/1666240. eCollection 2022.
Exploring the role of neuropeptides in the communication between monocyte subtypes facilitates an investigation of the pathogenesis of Kawasaki disease (KD). We investigated the patterns of interaction between neuropeptide-associated ligands and receptors in monocyte subpopulations in KD patients. Single-cell analysis was employed for the identification of cell subpopulations in KD patients, and monocytes were classified into 3 subpopulations: classical monocytes (CMs), intermediate monocytes (IMs), and nonclassical monocytes (NCMs). Cell-cell communication and differential analyses were used to identify ligand-receptor interactions in monocytes. Five neuropeptide-related genes (, , , , and ) were involved in cell-cell interactions, wherein FPR2, a neuropeptide receptor, was significantly highly expressed in KD. Weighted gene coexpression network analysis revealed a significant correlation between the yellow module and FPR2 ( < 0.001, CC = 0.43). Using the genes in the yellow module, we constructed a PPI network to assess the possible functions of the FPR2-associated gene network. Gene set enrichment analysis showed that increased FPR2 levels may be involved in immune system regulation. FPR2 in CMs mediates the control of inflammation in KD. The findings of this study may provide a novel target for the clinical treatment of KD.
探讨神经肽在单核细胞亚型间通讯中的作用,有助于研究川崎病(KD)的发病机制。我们研究了 KD 患者单核细胞亚群中神经肽相关配体与受体的相互作用模式。采用单细胞分析鉴定 KD 患者中的细胞亚群,将单核细胞分为 3 个亚群:经典单核细胞(CMs)、中间单核细胞(IMs)和非经典单核细胞(NCMs)。通过细胞间通讯和差异分析鉴定单核细胞中的配体-受体相互作用。有 5 个神经肽相关基因(、、、、和)参与细胞间相互作用,其中神经肽受体 FPR2 在 KD 中表达显著上调。加权基因共表达网络分析显示,黄色模块与 FPR2 之间存在显著相关性(<0.001,CC=0.43)。使用黄色模块中的基因,我们构建了一个 PPI 网络来评估 FPR2 相关基因网络的可能功能。基因集富集分析表明,FPR2 水平的升高可能参与免疫系统的调节。CMs 中的 FPR2 介导 KD 中的炎症控制。本研究的结果可能为 KD 的临床治疗提供新的靶点。