Relaxin Modulates the Genomic Actions and Biological Effects of Estrogen in the Myometrium.

IF 3.8 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Sudeshna Tripathy, Anusha Nagari, Shu-Ping Chiu, Tulip Nandu, Cristel V Camacho, Mala Mahendroo, W Lee Kraus
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Abstract

Estradiol (E2) and relaxin (Rln) are steroid and polypeptide hormones, respectively, with important roles in the female reproductive tract, including myometrium. Some actions of Rln, which are mediated by its membrane receptor RXFP1, require or are augmented by E2 signaling through its cognate nuclear steroid receptor, estrogen receptor alpha (ERα). In contrast, other actions of Rln act in opposition to the effects of E2. Here we explored the molecular and genomic mechanisms that underlie the functional interplay between E2 and Rln in the myometrium. We used both ovariectomized female mice and immortalized human myometrial cells expressing wild-type or mutant ERα (hTERT-HM-ERα cells). Our results indicate that Rln modulates the genomic actions and biological effects of estrogen in the myometrium and myometrial cells by reducing phosphorylation of ERα on serine 118 (S118), as well as by reducing the E2-dependent binding of ERα across the genome. These effects were associated with changes in the hormone-regulated transcriptome, including a decrease in the E2-dependent expression of some genes and enhanced expression of others. The inhibitory effects of Rln cotreatment on the E2-dependent phosphorylation of ERα required the nuclear dual-specificity phosphatases DUSP1 and DUSP5. Moreover, the inhibitory effects of Rln were reflected in a concomitant inhibition of the E2-dependent contraction of myometrial cells. Collectively, our results identify a pathway that integrates Rln/RXFP1 and E2/ERα signaling, resulting in a convergence of membrane and nuclear signaling pathways to control genomic and biological outcomes.

松弛素调节子宫肌瘤中雌激素的基因组作用和生物效应
雌二醇(E2)和松弛素(Rln)分别是类固醇激素和多肽激素,在女性生殖道(包括子宫肌层)中发挥着重要作用。Rln 的某些作用由其膜受体 RXFP1 介导,需要 E2 通过其同源的核类固醇受体雌激素受体α(ERα)发出信号或增强 E2 的信号。相反,Rln 的其他作用则与 E2 的作用相反。在这里,我们探讨了 E2 和 Rln 在子宫肌层中功能性相互作用的分子和基因组机制。我们使用了卵巢切除的雌性小鼠和表达野生型或突变型ERα的永生化人类子宫肌细胞(hTERT-HM-ERα细胞)。我们的研究结果表明,Rln通过减少ERα在丝氨酸118(S118)上的磷酸化,以及通过减少ERα在基因组中的E2依赖性结合,调节雌激素在子宫肌层和子宫肌细胞中的基因组作用和生物效应。这些效应与激素调控转录组的变化有关,包括一些基因的 E2 依赖性表达减少,而另一些基因的表达增强。Rln共处理对依赖于E2的ERα磷酸化的抑制作用需要核双特异性磷酸酶DUSP1和DUSP5。此外,Rln的抑制作用还体现在同时抑制子宫肌细胞的E2依赖性收缩。总之,我们的研究结果确定了一种整合 Rln/RXFP1 和 E2/ERα 信号的途径,它导致膜和核信号途径的融合,从而控制基因组和生物学结果。
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来源期刊
Endocrinology
Endocrinology 医学-内分泌学与代谢
CiteScore
8.10
自引率
4.20%
发文量
195
审稿时长
2-3 weeks
期刊介绍: The mission of Endocrinology is to be the authoritative source of emerging hormone science and to disseminate that new knowledge to scientists, clinicians, and the public in a way that will enable "hormone science to health." Endocrinology welcomes the submission of original research investigating endocrine systems and diseases at all levels of biological organization, incorporating molecular mechanistic studies, such as hormone-receptor interactions, in all areas of endocrinology, as well as cross-disciplinary and integrative studies. The editors of Endocrinology encourage the submission of research in emerging areas not traditionally recognized as endocrinology or metabolism in addition to the following traditionally recognized fields: Adrenal; Bone Health and Osteoporosis; Cardiovascular Endocrinology; Diabetes; Endocrine-Disrupting Chemicals; Endocrine Neoplasia and Cancer; Growth; Neuroendocrinology; Nuclear Receptors and Their Ligands; Obesity; Reproductive Endocrinology; Signaling Pathways; and Thyroid.
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