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免疫球蛋白G4相关疾病转录组中的血小板特异性基因特征

The Platelet-Specific Gene Signature in the Immunoglobulin G4-Related Disease Transcriptome.

作者信息

Oguz Ali Kemal, Oygur Cagdas Sahap, Gur Dedeoglu Bala, Dogan Turacli Irem, Serin Kilicoglu Sibel, Ergun Ihsan

机构信息

Department of Internal Medicine, Faculty of Medicine, Ufuk University, 06510 Ankara, Turkey.

Department of Internal Medicine (Rheumatology), Faculty of Medicine, Baskent University, 06490 Ankara, Turkey.

出版信息

Medicina (Kaunas). 2025 Jan 19;61(1):162. doi: 10.3390/medicina61010162.

Abstract

Immunoglobulin G4-related disease (IgG4-RD) is an immune-mediated, fibroinflammatory, multiorgan disease with an obscure pathogenesis. Findings indicating excessive platelet activation have been reported in systemic sclerosis, which is another autoimmune, multisystemic fibrotic disorder. The immune-mediated, inflammatory, and fibrosing intersections of IgG4-RD and systemic sclerosis raised a question about platelets' role in IgG4-RD. : By borrowing transcriptomic data from Nakajima et al. (GEO repository, GSE66465) we sought a platelet contribution to the pathogenesis of IgG4-RD. GEO2R and BRB-ArrayTools were used for class comparisons, and WebGestalt for functional enrichment analysis. During the selection of differentially expressed genes (DEGs), the translationally active but significantly low amount of platelet mRNA was specifically considered. The platelet-specific gene signature derived was used for cluster analysis of patient and control groups. : When IgG4-RD patients were compared with controls, 268 DEGs (204 with increased and 64 with decreased expression) were detected. Among these, a molecular signature of 22 platelet-specific genes harbored genes important for leukocyte-platelet aggregate formation (i.e., , , , , , and ) and extracellular matrix synthesis (i.e., , , , , and ). Functional enrichment analysis documented significantly enriched terms related to platelets, including but not limited to "platelet reactivity", "platelet degranulation", "platelet aggregation", and "platelet activation". During clustering, the 22 gene signatures successfully discriminated IgG4-RD and the control and the IgG4-RD before and after treatment groups. : Patients with IgG4-RD apparently display an activated platelet phenotype with a potential contribution to disease immunopathogenesis. If the platelets' role is validated through further carefully designed research, the therapeutic potentials of selected conventional and/or novel antiplatelet agents remain to be evaluated in patients with IgG4-RD. Transcriptomics and/or proteomics research with platelets should take into account the relatively low amounts of platelet mRNA, miRNA, and protein. Secondary analysis of omics data sets has great potential to reveal new and valuable information.

摘要

免疫球蛋白G4相关疾病(IgG4-RD)是一种免疫介导的、纤维炎性的多器官疾病,其发病机制尚不明确。在另一种自身免疫性多系统纤维化疾病——系统性硬化症中,已有研究报告发现血小板过度活化的迹象。IgG4-RD与系统性硬化症在免疫介导、炎症和纤维化方面的交集,引发了关于血小板在IgG4-RD中作用的疑问。通过借鉴中岛等人(基因表达综合数据库,GSE66465)的转录组数据,我们探寻血小板在IgG4-RD发病机制中的作用。使用GEO2R和BRB-ArrayTools进行类别比较,使用WebGestalt进行功能富集分析。在选择差异表达基因(DEG)时,特别考虑了具有翻译活性但数量显著较少的血小板mRNA。所获得的血小板特异性基因特征用于患者组和对照组的聚类分析。将IgG4-RD患者与对照组进行比较时,检测到268个差异表达基因(204个表达增加,64个表达减少)。其中,22个血小板特异性基因的分子特征包含对白细胞-血小板聚集体形成(即 、 、 、 、 、 和 )以及细胞外基质合成(即 、 、 、 、 和 )重要的基因。功能富集分析表明,与血小板相关的术语显著富集,包括但不限于“血小板反应性”“血小板脱颗粒”“血小板聚集”和“血小板活化”。在聚类过程中,这22个基因特征成功区分了IgG4-RD组与对照组,以及治疗前后的IgG4-RD组。IgG4-RD患者显然表现出活化的血小板表型,这可能对疾病的免疫发病机制有一定作用。如果通过进一步精心设计的研究验证了血小板的作用,那么在IgG4-RD患者中,选定的传统和/或新型抗血小板药物的治疗潜力仍有待评估。针对血小板的转录组学和/或蛋白质组学研究应考虑到血小板mRNA、miRNA和蛋白质相对较低的含量。组学数据集的二次分析具有揭示新的有价值信息的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/991f/11767091/3ef186940c19/medicina-61-00162-g001.jpg

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