CDC42 缺乏会导致子宫内膜基质细胞衰老,造成反复种植失败。

IF 6 1区 医学 Q1 OBSTETRICS & GYNECOLOGY Human reproduction Pub Date : 2024-11-01 DOI:10.1093/humrep/deae246
Xinyi Tang, Yingchun Zhu, Zhiwen Cao, Xiaoying Wang, Xinyu Cai, Yurun Tang, Jidong Zhou, Min Wu, Xin Zhen, Lijun Ding, Guijun Yan, Haibin Wang, Haixiang Sun, Ruiwei Jiang
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Several transcriptomic studies have reported increased senescence in the endometrium in young patients with RIF. Our previous transcriptomic sequencing study discovered that endometrium from women with RIF showed downregulation of CDC42, which is an essential molecule affected by various senescence-related diseases.</p><p><strong>Study design, size, duration: </strong>The endometrial samples of a total of 71 fertile control patients and 37 RIF patients were collected to verify the association between CDC42 expression and endometrial senescence of RIF patients. Primary endometrial stromal cells (EnSCs) were isolated from endometrial biopsies taken from patients without any endometrial complications and planning to undergo IVF, then subjected to adenovirus-mediated CDC42 knockdown and decidualization induction to explore the detailed mechanism by which CDC42 governs stromal senescence and decidualization. Wnt inhibitor XAV-939 was used to correct the endometrial senescence and decidualization defect.</p><p><strong>Participants/materials, setting, methods: </strong>Senescence was determined by cell cycle arrest markers (e.g. P16, P21, and P53), SASP molecules (e.g. IL6 and CXCL8), and SA-β-gal staining. Masson's staining and Sirius Red staining were used to detect the endometrial fibrosis. Decidualization was evaluated by the mRNA expression and protein secretion of PRL and IGFBP1, F-actin immunostaining, and the BeWo spheroids 'in vitro implantation' model. Methods used to assess cell function included adenovirus transduction, RNA-sequencing, bioinformatic analysis, western blotting, RT-qPCR, ELISA, and immunofluorescence.</p><p><strong>Main results and the role of chance: </strong>Here, we observed remarkably increased levels of stromal senescence and fibrosis, along with stromal CDC42 deficiency, in the endometrium of patients with RIF (P < 0.001). Knockdown of CDC42 effectively induced premature senescence in EnSCs, leading to aberrant accumulation of senescent EnSCs and collagen deposition during decidualization. CDC42 deficiency in EnSCs restrained the decidualization differentiation and receptivity to trophoblast cells. Transcriptomic analysis revealed Wnt signaling activation as a critical downstream alteration in CDC42-deficient EnSCs. Mechanistically, CDC42 interacted with AKT competitively to impede the binding of GSK3β to AKT. Knockdown of CDC42 increased AKT-mediated phosphorylation of GSK3β to inactivate the Axin-GSK3β destruction complex, leading to accumulation and nuclear translocation of β-catenin. Importantly, Wnt signaling inhibitors partially corrected the endometrial senescence caused by CDC42 deficiency, and improved both decidualization and trophoblast invasion.</p><p><strong>Large scale data: </strong>RNA-seq data sets generated in this study have been deposited at the NCBI database with BioProject accession number PRJNA1102745.</p><p><strong>Limitations, reasons for caution: </strong>The present study was based on in vitro cell cultures. Further studies involving CDC42-regulated endometrial senescence are needed in knockout mice model and human endometrial assembloids.</p><p><strong>Wider implications of the findings: </strong>In addition to uncovering endometrial senescence in RIF, our findings underscore the significance of CDC42 in modulating EnSC senescence to maintain the decidualization function, and suggest Wnt signaling inhibitors as potential therapeutic agents for alleviating endometrial senescence.</p><p><strong>Study funding/competing interest(s): </strong>This work was supported by the National Natural Science Foundation of China [82271698 (R.J.), 82030040 (H.S.), 82288102 (H.W.), and 82371680 (G.Y.)]; the Natural Science Foundation of Jiangsu Province [BK20231117 (R.J.)]; and the Medical Science and Technology Development Foundation of Nanjing Department of Health [YKK23097 (Y.Z.)]. 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Wnt inhibitor XAV-939 was used to correct the endometrial senescence and decidualization defect.</p><p><strong>Participants/materials, setting, methods: </strong>Senescence was determined by cell cycle arrest markers (e.g. P16, P21, and P53), SASP molecules (e.g. IL6 and CXCL8), and SA-β-gal staining. Masson's staining and Sirius Red staining were used to detect the endometrial fibrosis. Decidualization was evaluated by the mRNA expression and protein secretion of PRL and IGFBP1, F-actin immunostaining, and the BeWo spheroids 'in vitro implantation' model. Methods used to assess cell function included adenovirus transduction, RNA-sequencing, bioinformatic analysis, western blotting, RT-qPCR, ELISA, and immunofluorescence.</p><p><strong>Main results and the role of chance: </strong>Here, we observed remarkably increased levels of stromal senescence and fibrosis, along with stromal CDC42 deficiency, in the endometrium of patients with RIF (P < 0.001). Knockdown of CDC42 effectively induced premature senescence in EnSCs, leading to aberrant accumulation of senescent EnSCs and collagen deposition during decidualization. CDC42 deficiency in EnSCs restrained the decidualization differentiation and receptivity to trophoblast cells. Transcriptomic analysis revealed Wnt signaling activation as a critical downstream alteration in CDC42-deficient EnSCs. Mechanistically, CDC42 interacted with AKT competitively to impede the binding of GSK3β to AKT. Knockdown of CDC42 increased AKT-mediated phosphorylation of GSK3β to inactivate the Axin-GSK3β destruction complex, leading to accumulation and nuclear translocation of β-catenin. 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引用次数: 0

摘要

研究问题:细胞分裂周期42(CDC42)蛋白在子宫内膜基质中的下调是否会导致复发性着床失败(RIF)患者的子宫内膜衰老,其潜在机制是什么?CDC42 缺乏会导致子宫内膜基质衰老和蜕膜化缺陷,通过激活 Wnt 信号通路损害 RIF 患者的子宫接受能力:由于子宫内膜组织的周期性重塑和蜕膜化,子宫衰老具有独特性。一些转录组研究报告称,RIF 年轻患者的子宫内膜衰老程度增加。我们之前的转录组测序研究发现,RIF女性患者的子宫内膜显示出CDC42的下调,而CDC42是受各种衰老相关疾病影响的重要分子:研究设计、规模和持续时间:为了验证 CDC42 表达与 RIF 患者子宫内膜衰老之间的关系,研究人员收集了 71 名育龄对照组患者和 37 名 RIF 患者的子宫内膜样本。从无任何子宫内膜并发症且计划进行试管婴儿的患者子宫内膜活检组织中分离出原代子宫内膜基质细胞(EnSCs),然后对其进行腺病毒介导的CDC42基因敲除和蜕膜化诱导,以探索CDC42调控基质衰老和蜕膜化的详细机制。Wnt抑制剂XAV-939用于纠正子宫内膜衰老和蜕膜化缺陷:衰老通过细胞周期停滞标志物(如 P16、P21 和 P53)、SASP 分子(如 IL6 和 CXCL8)和 SA-β-gal 染色来确定。马森氏染色和天狼星红染色用于检测子宫内膜纤维化。通过PRL和IGFBP1的mRNA表达和蛋白分泌、F-肌动蛋白免疫染色和BeWo球体 "体外植入 "模型来评估蜕膜化情况。评估细胞功能的方法包括腺病毒转导、RNA测序、生物信息学分析、Western印迹、RT-qPCR、ELISA和免疫荧光:在这里,我们观察到RIF患者的子宫内膜基质衰老和纤维化水平显著增加,同时基质CDC42缺乏(P 大比例尺数据):本研究中生成的 RNA-seq 数据集已存入 NCBI 数据库,BioProject 编号为 PRJNA1102745:本研究基于体外细胞培养。研究结果的广泛意义:除了发现RIF中的子宫内膜衰老外,我们的发现还强调了CDC42在调节EnSC衰老以维持蜕膜功能方面的重要性,并建议将Wnt信号抑制剂作为缓解子宫内膜衰老的潜在治疗药物:本研究得到了国家自然科学基金[82271698(R.J.)、82030040(H.S.)、82288102(H.W.)和82371680(G.Y.)]、江苏省自然科学基金[BK20231117(R.J.)]和南京市卫生局医学科技发展基金[YKK23097(Y.Z.)]的资助。作者声明无潜在利益冲突。
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CDC42 deficiency leads to endometrial stromal cell senescence in recurrent implantation failure.

Study question: Does the downregulation of cell division cycle 42 (CDC42) protein in endometrial stroma lead to endometrial senescence in patients with recurrent implantation failure (RIF), and what is the potential mechanism?

Summary answer: CDC42 deficiency causes endometrial stromal senescence and decidualization defects, impairing uterine receptivity of RIF patients, via activation of Wnt signaling pathway.

What is known already: Uterine aging is unique due to the cyclic remodeling and decidualization of endometrial tissue. Several transcriptomic studies have reported increased senescence in the endometrium in young patients with RIF. Our previous transcriptomic sequencing study discovered that endometrium from women with RIF showed downregulation of CDC42, which is an essential molecule affected by various senescence-related diseases.

Study design, size, duration: The endometrial samples of a total of 71 fertile control patients and 37 RIF patients were collected to verify the association between CDC42 expression and endometrial senescence of RIF patients. Primary endometrial stromal cells (EnSCs) were isolated from endometrial biopsies taken from patients without any endometrial complications and planning to undergo IVF, then subjected to adenovirus-mediated CDC42 knockdown and decidualization induction to explore the detailed mechanism by which CDC42 governs stromal senescence and decidualization. Wnt inhibitor XAV-939 was used to correct the endometrial senescence and decidualization defect.

Participants/materials, setting, methods: Senescence was determined by cell cycle arrest markers (e.g. P16, P21, and P53), SASP molecules (e.g. IL6 and CXCL8), and SA-β-gal staining. Masson's staining and Sirius Red staining were used to detect the endometrial fibrosis. Decidualization was evaluated by the mRNA expression and protein secretion of PRL and IGFBP1, F-actin immunostaining, and the BeWo spheroids 'in vitro implantation' model. Methods used to assess cell function included adenovirus transduction, RNA-sequencing, bioinformatic analysis, western blotting, RT-qPCR, ELISA, and immunofluorescence.

Main results and the role of chance: Here, we observed remarkably increased levels of stromal senescence and fibrosis, along with stromal CDC42 deficiency, in the endometrium of patients with RIF (P < 0.001). Knockdown of CDC42 effectively induced premature senescence in EnSCs, leading to aberrant accumulation of senescent EnSCs and collagen deposition during decidualization. CDC42 deficiency in EnSCs restrained the decidualization differentiation and receptivity to trophoblast cells. Transcriptomic analysis revealed Wnt signaling activation as a critical downstream alteration in CDC42-deficient EnSCs. Mechanistically, CDC42 interacted with AKT competitively to impede the binding of GSK3β to AKT. Knockdown of CDC42 increased AKT-mediated phosphorylation of GSK3β to inactivate the Axin-GSK3β destruction complex, leading to accumulation and nuclear translocation of β-catenin. Importantly, Wnt signaling inhibitors partially corrected the endometrial senescence caused by CDC42 deficiency, and improved both decidualization and trophoblast invasion.

Large scale data: RNA-seq data sets generated in this study have been deposited at the NCBI database with BioProject accession number PRJNA1102745.

Limitations, reasons for caution: The present study was based on in vitro cell cultures. Further studies involving CDC42-regulated endometrial senescence are needed in knockout mice model and human endometrial assembloids.

Wider implications of the findings: In addition to uncovering endometrial senescence in RIF, our findings underscore the significance of CDC42 in modulating EnSC senescence to maintain the decidualization function, and suggest Wnt signaling inhibitors as potential therapeutic agents for alleviating endometrial senescence.

Study funding/competing interest(s): This work was supported by the National Natural Science Foundation of China [82271698 (R.J.), 82030040 (H.S.), 82288102 (H.W.), and 82371680 (G.Y.)]; the Natural Science Foundation of Jiangsu Province [BK20231117 (R.J.)]; and the Medical Science and Technology Development Foundation of Nanjing Department of Health [YKK23097 (Y.Z.)]. The authors declare no potential conflicts of interest.

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来源期刊
Human reproduction
Human reproduction 医学-妇产科学
CiteScore
10.90
自引率
6.60%
发文量
1369
审稿时长
1 months
期刊介绍: Human Reproduction features full-length, peer-reviewed papers reporting original research, concise clinical case reports, as well as opinions and debates on topical issues. Papers published cover the clinical science and medical aspects of reproductive physiology, pathology and endocrinology; including andrology, gonad function, gametogenesis, fertilization, embryo development, implantation, early pregnancy, genetics, genetic diagnosis, oncology, infectious disease, surgery, contraception, infertility treatment, psychology, ethics and social issues.
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