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rs2910686 对 IBD 中 ERAP2 表达和上皮炎症反应的影响。

The effect of rs2910686 on ERAP2 expression in IBD and epithelial inflammatory response.

机构信息

Department of Clinical and Molecular Medicine, Norwegian University of Science and Technology (NTNU), Trondheim, Norway.

Department of Gastroenterology and Hepatology, Clinic of Medicine, St. Olav's University Hospital, Trondheim, Norway.

出版信息

J Transl Med. 2024 Aug 9;22(1):750. doi: 10.1186/s12967-024-05532-w.

Abstract

BACKGROUND

ERAP2 is an aminopeptidase involved in antigen processing and presentation, and harbor genetic variants linked to several inflammatory diseases such as Inflammatory Bowel Disease (IBD). The lack of an ERAP2 gene homologue in mice has hampered functional studies, and most human studies have focused on cells of hematopoietic origin. Using an IBD biobank as vantage point, this study explores how genetic variation in ERAP2 affects gene expression in human-derived epithelial organoids upon proinflammatory stimulation.

METHODS

An IBD patient cohort was genotyped with regards to two single nucleotide polymorphisms (SNP) (rs2910686/rs2248374) associated with ERAP2 expression levels, and we examined the correlation between colon gene expression and genotype, specifically aiming to establish a relationship with ERAP2 expression proficiency. Human-derived colon organoids (colonoids) with known ERAP2 genotype were established and used to explore differences in whole genome gene expression between ERAP2-deficient (n = 4) and -proficient (n = 4) donors upon pro-inflammatory encounter.

RESULTS

When taking rs2910686 genotype into account, ERAP2 gene expression is upregulated in the inflamed colon of IBD patients. Colonoids upregulate ERAP2 upon IFNɣ stimulation, and ERAP2 expression proficiency is dependent on rs2910686 genotype. Colonoid genotyping confirms that mechanisms independent of the frequently studied SNP rs2248374 can cause ERAP2-deficiency. A total of 586 genes involved in various molecular mechanisms are differentially expressed between ERAP2 proficient- and deficient colonoids upon proinflammatory stimulation, including genes encoding proteins with the following molecular function: catalytic activity (AOC1, CPE, ANPEP and MEP1A), regulator activity (TNFSF9, MDK, GDF15, ILR6A, LGALS3 and FLNA), transmembrane transporter activity (SLC40A1 and SLC5A1), and extracellular matrix structural constituents (FGL2, HMCN2, and MUC17).

CONCLUSIONS

ERAP2 is upregulated in the inflamed IBD colon mucosa, and expression proficiency is highly correlated with genotype of rs2910686. While the SNP rs2248374 is commonly used to determine ERAP2 expressional proficiency, our data confirms that mechanisms independent of this SNP can lead to ERAP2 deficiency. Our data demonstrates that epithelial ERAP2 presence affects the inflammatory response in colonoids, suggesting a pleiotropic role of ERAP2 beyond MHC class I antigen processing.

摘要

背景

ERAP2 是一种参与抗原加工和呈递的氨肽酶,其遗传变异与多种炎症性疾病有关,如炎症性肠病(IBD)。由于缺乏 ERAP2 基因的同源物,小鼠的功能研究受到阻碍,而大多数人类研究都集中在造血来源的细胞上。本研究利用 IBD 生物库作为研究起点,探讨 ERAP2 基因中的遗传变异如何影响人类衍生的上皮类器官在促炎刺激下的基因表达。

方法

对 2910686/rs2248374 两个单核苷酸多态性(SNP)与 ERAP2 表达水平相关的 IBD 患者队列进行基因分型,我们还研究了结肠基因表达与基因型之间的相关性,特别是旨在确定与 ERAP2 表达效率的关系。建立了已知 ERAP2 基因型的人源性结肠类器官(colonoids),并用于研究 ERAP2 缺陷(n=4)和-高效(n=4)供体在促炎接触时全基因组基因表达的差异。

结果

考虑到 rs2910686 基因型,IBD 患者炎症结肠中的 ERAP2 基因表达上调。IFNɣ 刺激后,colonoids 上调 ERAP2,而 ERAP2 表达效率依赖于 rs2910686 基因型。colonoid 基因分型证实,除了经常研究的 SNP rs2248374 之外,还有其他机制可以导致 ERAP2 缺陷。在促炎刺激下,ERAP2 高效和缺陷的结肠类器官之间共有 586 个参与各种分子机制的基因表达不同,包括编码具有以下分子功能的蛋白质的基因:催化活性(AOC1、CPE、ANPEP 和 MEP1A)、调节活性(TNFSF9、MDK、GDF15、ILR6A、LGALS3 和 FLNA)、跨膜转运活性(SLC40A1 和 SLC5A1)和细胞外基质结构成分(FGL2、HMCN2 和 MUC17)。

结论

在炎症性 IBD 结肠黏膜中,ERAP2 上调,表达效率与 rs2910686 基因型高度相关。虽然 SNP rs2248374 通常用于确定 ERAP2 的表达效率,但我们的数据证实,除了这个 SNP 之外,还有其他机制可以导致 ERAP2 缺陷。我们的数据表明,上皮 ERAP2 的存在会影响结肠类器官的炎症反应,这表明 ERAP2 除了 MHC Ⅰ类抗原加工外,还具有多效性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1c0/11316291/a19d7a0272b0/12967_2024_5532_Fig1_HTML.jpg

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