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◇ bioRxiv2026-09-03· developmental biology

Uterine ERBB3 signaling is critical to cultivate stromal environment for functional gland branching

B. Li, M. Wang, A. Dewar, W. Deng, S. K. Dey, X. Sun

原始摘要(英文原文)· Original abstract
Preimplantation uterine gland differentiation, involving glandular branching, is a prerequisite for secretion of leukemia inhibitory factor (LIF), thereby establishing uterine receptivity to embryo implantation. This differentiation process is disrupted by the absence of FOXA2, a transcription factor specifically present in uterine glands. It remains unclear whether preimplantation glandular differentiation is regulated exclusively by gland-intrinsic mechanisms or is influenced by the surrounding microenvironment through mesenchymal-epithelial interactions. We show here that uterine deletion of Erbb3 leads to impaired gland branching and FOXA2 expression, as well as reduced female fertility. In contrast, females with uterine epithelial-specific deletion of Erbb3 show normal fertility, suggesting a critical role of stromal ERBB3 signaling. A transcriptomic profiling of day 3 stromal cells identified Igf1 as a candidate paracrine factor mediating the stromal-epithelial interaction. Thus, the uterine deletion of Igf1r leads to a reduced gland branching phenotype similar to that observed in Erbb3d/d uteri. These results demonstrate that ERBB3 regulates glandular branching and embryo implantation via the ERBB3-IGF1-IGF1R signaling pathway.
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