MAML1:一种改变子宫内膜上皮细胞粘附能力的协同调节因子。

Sadaf Zafir, Wei Zhou, Ellen Menkhorst, Leilani Santos, Evdokia Dimitriadis
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引用次数: 4

摘要

背景:子宫内膜容受性异常已被确定为胚胎成功着床的主要障碍。子宫内膜容受性是指子宫内膜上皮发生的构象和生化变化,使其能够粘附和接受囊胚附着。这发生在女性月经周期的分泌中期,是许多激素、细胞因子和其他因素微妙相互作用的结果。窗外,子宫内膜对正在植入的囊胚具有难治性。研究表明,Notch配体和受体在不孕症妇女的子宫内膜中失调。Mastermind Like Transcriptional Coactivator 1 (MAML1)是Notch信号通路的一种已知的共激活因子。本研究旨在确定MAML1在调节子宫内膜容受性中的作用。方法:采用免疫组化方法检测人可育子宫内膜(非受期增殖期和受期分泌中期)中MAML1的表达和定位。石川细胞被用作子宫内膜上皮模型,以研究MAML1敲低对子宫内膜对HTR8/SVneo(滋养细胞系)球体粘附能力的功能影响。在Ishikawa细胞中敲低MAML1后,通过qPCR评估子宫内膜容受性标志物以及Notch依赖和独立通路成员的表达。采用双尾未配对或配对学生t检验进行统计学分析,显著性阈值为P。结果:MAML1定位于人子宫内膜腔上皮、腺上皮和间质,分泌中期发现的表达增加仅限于腔上皮(P)。我们的数据强烈表明,MAML1参与调节子宫内膜粘附能力,并可能直接或间接地通过Notch信号通路促进胚胎附着。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

MAML1: a coregulator that alters endometrial epithelial cell adhesive capacity.

MAML1: a coregulator that alters endometrial epithelial cell adhesive capacity.

MAML1: a coregulator that alters endometrial epithelial cell adhesive capacity.

MAML1: a coregulator that alters endometrial epithelial cell adhesive capacity.

Background: Abnormalities in endometrial receptivity has been identified as a major barrier to successful embryo implantation. Endometrial receptivity refers to the conformational and biochemical changes occurring in the endometrial epithelial layer which make it adhesive and receptive to blastocyst attachment. This takes place during the mid-secretory phase of woman's menstrual cycle and is a result of a delicate interplay between numerous hormones, cytokines and other factors. Outside of this window, the endometrium is refractory to an implanting blastocyst. It has been shown that Notch ligands and receptors are dysregulated in the endometrium of infertile women. Mastermind Like Transcriptional Coactivator 1 (MAML1) is a known coactivator of the Notch signaling pathway. This study aimed to determine the role of MAML1 in regulating endometrial receptivity.

Methods: The expression and localization of MAML1 in the fertile human endometrium (non-receptive proliferative phase versus receptive mid-secretory phase) were determined by immunohistochemistry. Ishikawa cells were used as an endometrial epithelial model to investigate the functional consequences of MAML1 knockdown on endometrial adhesive capacity to HTR8/SVneo (trophoblast cell line) spheroids. After MAML1 knockdown in Ishikawa cells, the expression of endometrial receptivity markers and Notch dependent and independent pathway members were assessed by qPCR. Two-tailed unpaired or paired student's t-test were used for statistical analysis with a significance threshold of P < 0.05.

Results: MAML1 was localized in the luminal epithelium, glandular epithelium and stroma of human endometrium and the increased expression identified in the mid-secretory phase was restricted only to the luminal epithelium (P < 0.05). Functional analysis using Ishikawa cells demonstrated that knockdown of MAML1 significantly reduced epithelial adhesive capacity (P < 0.01) to HTR8/SVneo (trophoblast cell line) spheroids compared to control. MAML1 knockdown significantly affected the expression of classical receptivity markers (SPP1, DPP4) and this response was not directly via hormone receptors. The expression level of Hippo pathway target Ankyrin repeat domain-containing protein 1 (ANKRD1) was also affected after MAML1 knockdown in Ishikawa cells.

Conclusion: Our data strongly suggest that MAML1 is involved in regulating the endometrial adhesive capacity and may facilitate embryo attachment, either directly or indirectly through the Notch signaling pathway.

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