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SMAD2/3 信号在子宫上皮细胞中控制子宫内膜细胞的稳态和再生。

SMAD2/3 signaling in the uterine epithelium controls endometrial cell homeostasis and regeneration.

机构信息

Department of Pathology and Immunology, Baylor College of Medicine, Houston, TX, 77030, USA.

Center for Drug Discovery, Baylor College of Medicine, Houston, TX, 77030, USA.

出版信息

Commun Biol. 2023 Mar 11;6(1):261. doi: 10.1038/s42003-023-04619-2.

Abstract

The regenerative potential of the endometrium is attributed to endometrial stem cells; however, the signaling pathways controlling its regenerative potential remain obscure. In this study, genetic mouse models and endometrial organoids are used to demonstrate that SMAD2/3 signaling controls endometrial regeneration and differentiation. Mice with conditional deletion of SMAD2/3 in the uterine epithelium using Lactoferrin-iCre develop endometrial hyperplasia at 12-weeks and metastatic uterine tumors by 9-months of age. Mechanistic studies in endometrial organoids determine that genetic or pharmacological inhibition of SMAD2/3 signaling disrupts organoid morphology, increases the glandular and secretory cell markers, FOXA2 and MUC1, and alters the genome-wide distribution of SMAD4. Transcriptomic profiling of the organoids reveals elevated pathways involved in stem cell regeneration and differentiation such as the bone morphogenetic protein (BMP) and retinoic acid signaling (RA) pathways. Therefore, TGFβ family signaling via SMAD2/3 controls signaling networks which are integral for endometrial cell regeneration and differentiation.

摘要

子宫内膜的再生潜能归因于子宫内膜干细胞;然而,控制其再生潜能的信号通路仍不清楚。在这项研究中,使用遗传小鼠模型和子宫内膜类器官来证明 SMAD2/3 信号通路控制子宫内膜的再生和分化。使用乳铁蛋白-iCre 在子宫上皮细胞中条件性删除 SMAD2/3 的小鼠在 12 周时发展为子宫内膜增生,并在 9 个月时发展为转移性子宫肿瘤。在子宫内膜类器官中的机制研究确定,SMAD2/3 信号的遗传或药理学抑制破坏了类器官的形态,增加了腺体和分泌细胞标志物 FOXA2 和 MUC1,并改变了 SMAD4 的全基因组分布。类器官的转录组分析显示,涉及干细胞再生和分化的途径(如骨形态发生蛋白 (BMP) 和视黄酸信号 (RA) 途径)被上调。因此,TGFβ 家族信号通过 SMAD2/3 控制对子宫内膜细胞再生和分化至关重要的信号网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc14/10008566/ddec3b27c396/42003_2023_4619_Fig1_HTML.jpg

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