缺氧条件影响子宫内膜异位症子宫内膜基质细胞转录组,促进TGFBI轴。

IF 3.9 2区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Frontiers in Endocrinology Pub Date : 2024-12-18 eCollection Date: 2024-01-01 DOI:10.3389/fendo.2024.1465393
Meruert Sarsenova, Nageswara Rao Boggavarapu, Keiu Kask, Vijayachitra Modhukur, Külli Samuel, Helle Karro, Kristina Gemzell-Danielsson, Parameswaran Grace Luther Lalitkumar, Andres Salumets, Maire Peters, Darja Lavogina
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引用次数: 0

摘要

背景:子宫内膜异位症的特征是子宫内膜样细胞异位生长,导致育龄妇女慢性盆腔疼痛、粘连和生育能力受损。通常,这些病变生长在缺氧环境下的腹膜腔中。已知缺氧会影响基因表达和蛋白激酶(PK)活性。我们旨在探讨缺氧条件下子宫内膜异位症中异位和异位子宫内膜转录组和PK活性特征的变化。方法:异位(EuESCs)和异位(EcESCs)子宫内膜基质细胞暴露于缺氧(1% O2)或常氧(20% O2) 48小时。我们在缺氧或常氧条件下培养的细胞中评估了PK活性并使用mRNA-seq检测了转录组。采用酶联免疫吸附法、定量逆转录pcr和免疫组织化学对转化生长因子β诱导(TGFBI)表达进行下游分析。结果:激酶分析显示,在缺氧条件下,EcESCs中camp依赖性PK (ppkac)和Akt活性轻微降低,rho依赖性PK (ROCK)活性呈增加趋势。对缺氧介导的培养细胞转录组变化的更广泛研究表明,缺氧暴露的EuESCs中,与有氧糖酵解和细胞代谢相关的基因上调。相比之下,EcESCs有一个单一的差异表达基因(TGFBI)在缺氧条件下上调。该基因也被发现在缺氧和常氧条件下的EuESCs中过表达,以及在常氧条件下的EcESCs和EuESCs中过表达。因此,在EcESC培养物和缺氧的EuESC培养物中,废培养基中分泌的TGFBI水平较高。在异位子宫内膜组织活检中,TGFBI mRNA和蛋白的表达与月经周期阶段有关,在增殖期表达水平较高。TGFBI染色显示该蛋白定位于基质和血管周围。在分泌期,TGFBI蛋白在异位子宫内膜中的表达强于配对的异位子宫内膜。结论:在这项研究中,我们发现缺氧介导的EuESCs和EcESCs的转录组变化特征,并确定TGFBI是子宫内膜异位症的潜在治疗靶点,因为它在纤维化和血管生成中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hypoxic conditions affect transcriptome of endometrial stromal cells in endometriosis and promote TGFBI axis.

Background: Endometriosis is characterized by the ectopic growth of endometrial-like cells, causing chronic pelvic pain, adhesions and impaired fertility in women of reproductive age. Usually, these lesions grow in the peritoneal cavity in a hypoxic environment. Hypoxia is known to affect gene expression and protein kinase (PK) activity. We aimed to explore the changes in the transcriptome and PK activity characteristic of eutopic and ectopic endometrium in endometriosis under hypoxia.

Methods: Eutopic (EuESCs) and ectopic (EcESCs) endometrial stromal cells were exposed to hypoxia (1% O2) or normoxia (20% O2) for 48 hours. We assessed PK activity and examined transcriptome using mRNA-seq in cells cultured under hypoxic or normoxic conditions. Enzyme-linked immunosorbent assay, quantitative reverse transcription-PCR and immunohistochemistry were performed for the downstream analysis of Transforming Growth Factor Beta Induced (TGFBI) expression.

Results: The kinase assay revealed a minor decrease in cAMP-dependent PK (PKAc) and Akt activity and a trend towards an increase in Rho-dependent PK (ROCK) activity in response to exposure to hypoxic conditions in EcESCs. A wider examination of the hypoxia-mediated changes in transcriptomes of cultured cells revealed that the genes related to aerobic glycolysis and cellular metabolism were upregulated in EuESCs exposed to hypoxia. In contrast, EcESCs had a single differentially expressed gene (TGFBI) upregulated under hypoxic conditions. This gene was also found to be overexpressed in EuESCs exposed to hypoxia vs normoxia, and in EcESCs vs EuESCs in normoxia. The level of secreted TGFBI in the spent culture media was accordingly high in the EcESC cultures and in the EuESC culture exposed to hypoxia. In the eutopic endometrial tissue biopsies, TGFBI mRNA and protein expression depended on the menstrual cycle phase, with higher levels observed in the proliferative phase. TGFBI staining showed the protein localized to the stroma and around the blood vessels. In the secretory phase, TGFBI protein expression was stronger in ectopic endometrium compared to paired eutopic endometrium.

Conclusions: Within this study, we showed hypoxia-mediated transcriptome changes characteristic of EuESCs and EcESCs and identified TGFBI as a potential therapeutic target for endometriosis due to its role in fibrosis and angiogenesis.

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来源期刊
Frontiers in Endocrinology
Frontiers in Endocrinology Medicine-Endocrinology, Diabetes and Metabolism
CiteScore
5.70
自引率
9.60%
发文量
3023
审稿时长
14 weeks
期刊介绍: Frontiers in Endocrinology is a field journal of the "Frontiers in" journal series. In today’s world, endocrinology is becoming increasingly important as it underlies many of the challenges societies face - from obesity and diabetes to reproduction, population control and aging. Endocrinology covers a broad field from basic molecular and cellular communication through to clinical care and some of the most crucial public health issues. The journal, thus, welcomes outstanding contributions in any domain of endocrinology. Frontiers in Endocrinology publishes articles on the most outstanding discoveries across a wide research spectrum of Endocrinology. The mission of Frontiers in Endocrinology is to bring all relevant Endocrinology areas together on a single platform.
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