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CREB5 失调通过抑制自噬来破坏复发性自然流产中的蜕膜化和母胎相互作用。

Dysregulation of CREB5 Impairs Decidualization and Maternal-Fetal Interactions by Inhibiting Autophagy in Recurrent Spontaneous Abortion.

机构信息

Department of Obstetrics and Gynecology, Renmin Hospital of Wuhan University, 99 Zhang Zhidong Road, Wuhan, Hubei, 430060, People's Republic of China.

Caidian District People's Hospital of Wuhan, Wuhan, Hubei, 430100, People's Republic of China.

出版信息

Reprod Sci. 2024 Jul;31(7):1983-2000. doi: 10.1007/s43032-024-01474-2. Epub 2024 Feb 29.

Abstract

BACKGROUND

Clinically, recurrent spontaneous abortion (RSA) is a pregnancy illness that is difficult to treat. Impaired decidualization is a documented cause of RSA, but the etiology and mechanism are still unknown. cAMP-responsive element binding protein 5 (CREB5) is a member of the ATF/CREB family. CREB5 has been reported to be related to pathological pregnancy, but there are few related studies on this topic in patients with RSA, and the underlying mechanism is unclear.

METHODS

We collected decidual tissues from RSA patients and healthy pregnant women to measure the expression level of CREB5, PRL, IGFBP1, ATG5, LC3B, and SQSTM/p62. Then, the changes in CREB5 expression and autophagy levels were measured in human endometrial stromal cells (hESCs) during decidualization. The expression levels of PRL and IGFBP1 were tested in sh-CREB5/ov-CREB5 hESCs after decidualization induction, and the autophagy level in sh-CREB5/ov-CREB5 hESCs was measured without decidualization induction. The decidualization ability of sh-CREB5 and ov-CREB5 hESCs treated with an autophagy inducer or inhibitor was measured. To investigate the effect of CREB5 in hESCs on the invasion and migration of HTR8/SVneo cells, we performed a coculture experiment. Finally, we examined the expression of CREB5 and autophagy key proteins in mouse decidual tissues by constructing an abortion mouse model.

RESULTS

In our study, we found that the expression of CREB5 was unusually elevated in the uterine decidua of RSA patients, but the expression of PRL, IGFBP1, and autophagy were decreased. During the decidualization of hESCs, the expression of CREB5 gradually decreases in a time-dependent manner with increasing autophagy. Moreover, by knocking down or overexpressing CREB5 in hESCs, it was found that CREB5 can impair decidualization and reduce autophagy in hESCs. Furthermore, the damage caused by CREB5 in terms of decidualization can be reversed by the addition of an autophagy inducer (rapamycin). In addition, CREB5 can increase the secretion of proteins (IL-1β and TGF-β1) in hESCs to inhibit trophoblast invasion and migration.

CONCLUSIONS

Our data support the supposition that CREB5 disturbs the decidualization of endometrial stromal cells and interactions at the maternal-fetal interface by inhibiting autophagy and that its abnormal upregulation and dysfunction may lead to RSA. It may function as a diagnostic and therapeutic target for RSA. Similarly, we found that in the spontaneous abortion mouse model, the expression of CREB5 in the decidual tissue of the abortion group was significantly increased, and autophagy was decreased.

摘要

背景

临床上,复发性自然流产(RSA)是一种难以治疗的妊娠疾病。蜕膜化受损是 RSA 的已知病因,但病因和机制尚不清楚。环磷酸腺苷反应元件结合蛋白 5(CREB5)是 ATF/CREB 家族的一员。据报道,CREB5 与病理性妊娠有关,但关于 RSA 患者中这方面的相关研究较少,其潜在机制尚不清楚。

方法

我们收集了 RSA 患者和健康孕妇的蜕膜组织,以测量 CREB5、PRL、IGFBP1、ATG5、LC3B 和 SQSTM/p62 的表达水平。然后,在人子宫内膜基质细胞(hESC)蜕膜化过程中测量 CREB5 表达和自噬水平的变化。在诱导蜕膜化后,在 sh-CREB5/ov-CREB5 hESC 中测试 PRL 和 IGFBP1 的表达水平,并且在未诱导蜕膜化的情况下测量 sh-CREB5/ov-CREB5 hESC 中的自噬水平。测量用自噬诱导剂或抑制剂处理的 sh-CREB5 和 ov-CREB5 hESC 的蜕膜化能力。为了研究 CREB5 在 hESC 中对 HTR8/SVneo 细胞侵袭和迁移的影响,我们进行了共培养实验。最后,我们通过构建流产小鼠模型来检查 CREB5 在小鼠蜕膜组织中的表达和自噬关键蛋白。

结果

在我们的研究中,我们发现 RSA 患者的子宫蜕膜中 CREB5 的表达异常升高,而 PRL、IGFBP1 和自噬的表达降低。在 hESC 的蜕膜化过程中,CREB5 的表达随时间呈依赖性逐渐降低,同时自噬增加。此外,通过在 hESC 中敲低或过表达 CREB5,发现 CREB5 可损害 hESC 的蜕膜化并减少自噬。此外,通过添加自噬诱导剂(雷帕霉素)可以逆转 CREB5 造成的蜕膜化损伤。此外,CREB5 可以增加 hESC 中蛋白质(IL-1β和 TGF-β1)的分泌,从而抑制滋养细胞的侵袭和迁移。

结论

我们的数据支持 CREB5 通过抑制自噬来干扰子宫内膜基质细胞的蜕膜化和母胎界面相互作用的假设,其异常上调和功能障碍可能导致 RSA。它可能作为 RSA 的诊断和治疗靶点。同样,我们发现在自发流产小鼠模型中,流产组蜕膜组织中 CREB5 的表达明显增加,自噬减少。

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