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20 June 2023 O-Fucosylation of BMP1 promotes endometrial decidualization by activating BMP/Smad signaling pathway
Yu Yang, Juan Liang, Siyi Chen, Aihui Zhang, Yaqi Li, Shuai Liu, Qiu Yan
Author Affiliations +
Abstract

Endometrial decidualization is critical to successful uterine receptivity and embryo implantation. Dysfunction of decidualization is associated with some pregnancy-related disorders, including miscarriage. Protein glycosylation is involved in many physiological and pathological processes. Protein O-fucosyltransferase 1 (poFUT1) is a key enzyme responsible for O-fucosylation biosynthesis on glycoproteins. Bone morphogenetic protein 1 (BMP1) is an essential glycoprotein in reproduction. However, the role and molecular mechanism of fucosylated BMP1 in endometrial stromal cell decidualization are still unknown. In the current study, we found that BMP1 contains a potential O-fucosylation site. Moreover, poFUT1 and BMP1 levels in the secretory phase are higher than those in the proliferative phase, and the highest level was observed in the human uterine tissues of early pregnancy, while a decrease of poFUT1 and BMP1 in the decidua was observed in miscarriage patients. Using human endometrial stromal cells (hESCs), we demonstrated that O-fucosylation of BMP1 was elevated after induced decidualization. Moreover, the increase of BMP1 O-fucosylation by poFUT1 promoted BMP1 secretion to the extracellular matrix, and more actively binds to CHRD. The binding of BMP1 and CHRD further released BMP4 originally bound to CHRD, and activated BMP/Smad signaling pathway, thereby accelerating the decidualization of human endometrial stromal cells. In summary, these results suggest that BMP1 O-fucosylation by poFUT1 could be a potential diagnostic and therapeutic target to predict miscarriage in early pregnancy examinations.

Summary Sentence

BMP1 O-fucosylation promotes decidualization.

Graphical Abstract

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Yu Yang, Juan Liang, Siyi Chen, Aihui Zhang, Yaqi Li, Shuai Liu, and Qiu Yan "O-Fucosylation of BMP1 promotes endometrial decidualization by activating BMP/Smad signaling pathway," Biology of Reproduction 109(2), 172-183, (20 June 2023). https://doi.org/10.1093/biolre/ioad060
Received: 15 October 2022; Accepted: 18 May 2023; Published: 20 June 2023
KEYWORDS
BMP1
endometrial decidualization
miscarriage
O-fucosylation
poFUT1
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