Estrogen degrades Scribble in endometrial epithelial cells through E3 ubiquitin ligase HECW1 in the development of diffuse adenomyosis
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Estrogen degrades Scribble in endometrial epithelial cells via HECW1 ubiquitination, disrupting polarity and contributing to adenomyosis development.
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Abstract
Despite its prevalence and the severity of symptoms, little is known about the pathogenesis and etiology of adenomyosis. In previous studies, the protein expression level of the polarity protein Scribble in the eutopic endometrium of patients with adenomyosis was found to be significantly decreased; however, little is known about its regulatory mechanism. In consideration of the important role of supraphysiologic estrogen production in the endometrium in the development of adenomyosis, we analyzed the effect and mechanism of estrogen on the expression of Scribble in vivo and in vitro. Firstly, we found Scribble was downregulated in eutopic endometrium and negatively related with aromatase P450 in tamoxifen-induced adenomyosis. Then, we established a 3D culture of primary endometrial epithelial cells and found that estrogen could disrupt apical-basal polarity of endometrial glandular epithelial cells. Based on the following experiments and GEO dataset screening, we found that estrogen regulates the expression level of Scribble by HECW1 through ubiquitination of Scribble protein. At last, we verified the expression of Scribble, HECW1, and aromatase P450 in eutopic endometrium of human and mouse specimens and found that the expression of HECW1 and aromatase P450 was significantly increased, while the expression of Scribble was significantly downregulated. Furthermore, a positive correlation was found between HECW1 and aromatase P450, while a negative correlation was found between HECW1 and Scribble in human clinical tissue specimens. Therefore, our research may provide a new understanding of the pathogenesis of adenomyosis.
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Cited by (9)
- Inhibition of TRPM3 by Primidone Provides a Potential Therapeutic Method for Adenomyosis Management 2025
- Magnetic resonance imaging-based Classification criteria combined with Serum CA125 for dysmenorrhea before focused ultrasound ablation surgery in adenomyosis 2024
- Estrogen regulates Scribble localization in endometrial epithelial cells through acyl protein thioesterase (APT)-mediated S-palmitoylation in adenomyosis 2023
- Serum <scp>CA125</scp> as a biomarker for dysmenorrhea in adenomyosis 2023
- Inhibition of TRPM3 by primidone provides a potential therapeutic method for adenomyosis management 2023
- Estrogen Regulates Scribble Localization in Endometrial Epithelial Cells Through Acyl Protein Thioesterase (APT)-Mediated S-Palmitoylation in Adenomyosis 2023
- Integrating Network Pharmacology and Experimental Validation Deciphers the Mechanism of Guizhi Fuling Wan against Adenomyosis 2021
- Scribble downregulation in adenomyosis compromises endometrial stromal decidualization by decreasing FOXO1 expression 2021
- Animal Models of Adenomyosis 2020
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