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炎症性肠病基因的功能筛选揭示了关键的上皮功能。

Functional screen of inflammatory bowel disease genes reveals key epithelial functions.

机构信息

Montreal Heart Institute Research Centre, 5000 rue Bélanger, S-6201, Montreal, Quebec, Canada.

Université de Montréal, Montreal, Quebec, Canada.

出版信息

Genome Med. 2021 Nov 11;13(1):181. doi: 10.1186/s13073-021-00996-7.

Abstract

BACKGROUND

Genetic studies have been tremendously successful in identifying genomic regions associated with a wide variety of phenotypes, although the success of these studies in identifying causal genes, their variants, and their functional impacts has been more limited.

METHODS

We identified 145 genes from IBD-associated genomic loci having endogenous expression within the intestinal epithelial cell compartment. We evaluated the impact of lentiviral transfer of the open reading frame (ORF) of these IBD genes into the HT-29 intestinal epithelial cell line via transcriptomic analyses. By comparing the genes in which expression was modulated by each ORF, as well as the functions enriched within these gene lists, we identified ORFs with shared impacts and their putative disease-relevant biological functions.

RESULTS

Analysis of the transcriptomic data for cell lines expressing the ORFs for known causal genes such as HNF4a, IFIH1, and SMAD3 identified functions consistent with what is already known for these genes. These analyses also identified two major clusters of genes: Cluster 1 contained the known IBD causal genes IFIH1, SBNO2, NFKB1, and NOD2, as well as genes from other IBD loci (ZFP36L1, IRF1, GIGYF1, OTUD3, AIRE and PITX1), whereas Cluster 2 contained the known causal gene KSR1 and implicated DUSP16 from another IBD locus. Our analyses highlight how multiple IBD gene candidates can impact on epithelial structure and function, including the protection of the mucosa from intestinal microbiota, and demonstrate that DUSP16 acts a regulator of MAPK activity and contributes to mucosal defense, in part via its regulation of the polymeric immunoglobulin receptor, involved in the protection of the intestinal mucosa from enteric microbiota.

CONCLUSIONS

This functional screen, based on expressing IBD genes within an appropriate cellular context, in this instance intestinal epithelial cells, resulted in changes to the cell's transcriptome that are relevant to their endogenous biological function(s). This not only helped in identifying likely causal genes within genetic loci but also provided insight into their biological functions. Furthermore, this work has highlighted the central role of intestinal epithelial cells in IBD pathophysiology, providing a scientific rationale for a drug development strategy that targets epithelial functions in addition to the current therapies targeting immune functions.

摘要

背景

遗传研究在确定与各种表型相关的基因组区域方面取得了巨大成功,尽管这些研究在确定因果基因、其变体及其功能影响方面的成功更为有限。

方法

我们从与 IBD 相关的基因组位点中鉴定了 145 个在肠上皮细胞区室中具有内源性表达的基因。我们通过转录组分析评估了将这些 IBD 基因的开放阅读框(ORF)通过慢病毒转染到 HT-29 肠上皮细胞系中的影响。通过比较每个 ORF 调节表达的基因,以及这些基因列表中富集的功能,我们确定了具有共同影响的 ORF 及其潜在的与疾病相关的生物学功能。

结果

分析表达已知因果基因(如 HNF4a、IFIH1 和 SMAD3)的 ORF 的细胞系的转录组数据,确定了与这些基因已知功能一致的功能。这些分析还确定了两个主要的基因簇:簇 1 包含已知的 IBD 因果基因 IFIH1、SBNO2、NFKB1 和 NOD2,以及来自其他 IBD 位点的基因(ZFP36L1、IRF1、GIGYF1、OTUD3、AIRE 和 PITX1),而簇 2 包含已知的因果基因 KSR1 和另一个 IBD 位点的候选基因 DUSP16。我们的分析强调了多个 IBD 基因候选物如何影响上皮结构和功能,包括保护粘膜免受肠道微生物群的侵害,并表明 DUSP16 作为 MAPK 活性的调节剂发挥作用,并通过其对多聚免疫球蛋白受体的调节,部分参与保护肠道粘膜免受肠道微生物群的侵害,从而促进粘膜防御。

结论

这项基于在适当的细胞环境中表达 IBD 基因的功能筛选,在此实例中为肠上皮细胞,导致与细胞内源性生物学功能相关的转录组变化。这不仅有助于在遗传位点内识别可能的因果基因,还提供了对其生物学功能的深入了解。此外,这项工作强调了肠上皮细胞在 IBD 发病机制中的核心作用,为除了目前针对免疫功能的治疗方法之外,还针对上皮功能的药物开发策略提供了科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/022e/8582123/5534b6e04c5b/13073_2021_996_Fig1_HTML.jpg

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