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SHP2 participates in decidualization by activating ERK to maintain normal nuclear localization of progesterone receptor

蜕膜化 间质细胞 蜕膜 细胞生物学 蜕膜细胞 子宫内膜 MAPK/ERK通路 内分泌学 内科学 孕酮受体 化学 生物 信号转导 癌症研究 胎盘 雌激素受体 医学 怀孕 胎儿 遗传学 癌症 乳腺癌
作者
Lin Cui,Weihua Zhao,Mengxiong Li,Yazhu Yang,Chengzi Tian,Dengyang Zhang,Zhiguang Chang,Yunzhe Zhang,Zhizhuang Joe Zhao,Y. Eugene Chen,Lin Ma
出处
期刊:Reproduction [Bioscientifica]
卷期号:166 (1): 37-53 被引量:1
标识
DOI:10.1530/rep-22-0367
摘要

The establishment and maintenance of embryo implantation and pregnancy require decidualization of endometrial stromal cells. This paper reveals that SHP2 ensures the correct subcellular localization of progesterone receptor, thereby safeguarding the process of decidualization.Decidualization is the process of conversion of endometrial stromal cells into decidual stromal cells, which is caused by progesterone production that begins during the luteal phase of the menstrual cycle and then increases throughout pregnancy dedicated to support embryonic development. Decidualization deficiency is closely associated with various pregnancy complications, such as recurrent miscarriage (RM). Here, we reported that Src-homology-2-containing phospho-tyrosine phosphatase (SHP2), a key regulator in the signal transduction process downstream of various receptors, plays an indispensable role in decidualization. SHP2 expression was upregulated during decidualization. SHP2 inhibitor RMC-4550 and shRNA-mediated SHP2 reduction resulted in a decreased level of phosphorylation of ERK and aberrant cytoplasmic localization of progesterone receptor (PR), coinciding with reduced expression of IGFBP1 and various other target genes of decidualization. Solely inhibiting ERK activity recapitulated these observations. Administration of RMC-4550 led to decidualization deficiency and embryo absorption in mice. Moreover, reduced expression of SHP2 was detected in the decidua of RM patients. Our results revealed that SHP2 is key to PR's nuclear localization, thereby indispensable for decidualization and that reduced expression of SHP2 might be engaged in the pathogenesis of RM.

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