An unanticipated discourse of HB-EGF with VANGL2 signaling during embryo implantation.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 37155852.
- Also identified by DOI 10.1073/pnas.2302937120 and PMC identifier 10193979.
- Licence recorded as CC BY-NC-ND.
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Abstract
Implantation is the first direct encounter between the embryo and uterus during pregnancy, and <i>Hbegf</i> is the earliest known molecular signaling for embryo-uterine crosstalk during implantation. The downstream effectors of heparin-binding EGF (HB-EGF) in implantation remain elusive due to the complexity of EGF receptor family. This study shows that the formation of implantation chamber (crypt) triggered by HB-EGF is disrupted by uterine deletion of <i>Vangl2,</i> a key planar cell polarity component (PCP). We found that HB-EGF binds to ERBB2 and ERBB3 to recruit VANGL2 for tyrosine phosphorylation. Using in vivo models, we show that uterine VAGL2 tyrosine phosphorylation is suppressed in <i>Erbb2/Erbb3</i> double conditional knockout mice. In this context, severe implantation defects in these mice lend support to the critical role of HB-EGF-ERBB2/3-VANGL2 in establishing a two-way dialogue between the blastocyst and uterus. In addition, the result addresses an outstanding question how VANGL2 is activated during implantation. Taken together, these observations reveal that HB-EGF regulates the implantation process by influencing uterine epithelial cell polarity comprising VANGL2.
Medical subject headings
- Cell Polarity
- Embryo Implantation