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泛素折叠修饰因子1特异性E3连接酶在维持肠道稳态和控制肠道炎症中的不可或缺作用。

Indispensable role of the Ubiquitin-fold modifier 1-specific E3 ligase in maintaining intestinal homeostasis and controlling gut inflammation.

作者信息

Cai Yafei, Zhu Guangxun, Liu Siyang, Pan Zezheng, Quintero Michaela, Poole Candace J, Lu Chunwan, Zhu Huabin, Islam Bianca, Riggelen Jan van, Browning Darren, Liu Kebin, Blumberg Richard, Singh Nagendra, Li Honglin

机构信息

1College of Animal Science and Technology, Nanjing Agricultural University, 210095 Nanjing, Jiangsu China.

2Department of Biochemistry & Molecular Biology, Georgia Cancer Center, Medical College of Georgia, Augusta University, Augusta, GA 30912 USA.

出版信息

Cell Discov. 2019 Jan 29;5:7. doi: 10.1038/s41421-018-0070-x. eCollection 2019.

Abstract

Intestinal exocrine secretory cells, including Paneth and goblet cells, have a pivotal role in intestinal barrier function and mucosal immunity. Dysfunction of these cells may lead to the pathogenesis of human diseases such as inflammatory bowel disease (IBD). Therefore, identification and elucidation of key molecular mechanisms that regulate the development and function of these exocrine cells would be crucial for understanding of disease pathogenesis and discovery of new therapeutic targets. The Ufm1 conjugation system is a novel ubiquitin-like modification system that consists of Ufm1 (Ubiquitin modifier 1), Uba5 (Ufm1-activating enzyme, E1), Ufc1 (Ufm1-conjugating enzyme, E2) and poorly characterized Ufm1 E3 ligase(s). Recent mouse genetic studies have demonstrated its indispensable role in embryonic development and hematopoiesis. Yet its role in other tissues and organs remains poorly defined. In this study, we found that both Ufl1 and Ufbp1, two key components of the Ufm1 E3 ligase, were highly expressed in the intestinal exocrine cells. Ablation of either Ufl1 and Ufbp1 led to significant loss of both Paneth and goblet cells, which in turn resulted in dysbiotic microbiota and increased susceptibility to experimentally induced colitis. At the cellular and molecular levels, deficiency caused elevation of endoplasmic reticulum stress and activation of the Unfolded Protein Response (UPR) and cell death program. Administration of small molecular chaperone partially prevented loss of Paneth cells caused by acute Ufbp1 deletion. Taken together, our results have provided unambiguous evidence for the crucial role of the Ufm1 E3 ligase in maintenance of intestinal homeostasis and protection from inflammatory diseases.

摘要

肠道外分泌细胞,包括潘氏细胞和杯状细胞,在肠道屏障功能和黏膜免疫中起关键作用。这些细胞功能失调可能导致诸如炎症性肠病(IBD)等人类疾病的发病机制。因此,识别和阐明调节这些外分泌细胞发育和功能的关键分子机制,对于理解疾病发病机制和发现新的治疗靶点至关重要。泛素样修饰因子1(Ufm1)缀合系统是一种新型的泛素样修饰系统,由Ufm1(泛素修饰因子1)、Uba5(Ufm1激活酶,E1)、Ufc1(Ufm1缀合酶,E2)和特性不明的Ufm1 E3连接酶组成。最近的小鼠遗传学研究表明其在胚胎发育和造血过程中发挥不可或缺的作用。然而,其在其他组织和器官中的作用仍不清楚。在本研究中,我们发现Ufm1 E3连接酶的两个关键组分Ufl1和Ufbp1在肠道外分泌细胞中高表达。敲除Ufl1或Ufbp1均导致潘氏细胞和杯状细胞显著减少,进而导致微生物群失调,并增加对实验性诱导结肠炎的易感性。在细胞和分子水平上,缺陷导致内质网应激升高、未折叠蛋白反应(UPR)激活和细胞死亡程序。给予小分子伴侣可部分预防急性Ufbp1缺失导致的潘氏细胞丢失。综上所述,我们的结果为Ufm1 E3连接酶在维持肠道稳态和预防炎症性疾病中的关键作用提供了明确证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8aad/6349939/914469b0283f/41421_2018_70_Fig1_HTML.jpg

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