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Journal of Molecular Endocrinology (2006) 36, 121-130    DOI: 10.1677/jme.1.01910
© 2006 Society for Endocrinology

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Tetraspanin CD9 regulates invasion during mouse embryo implantation

W M Liu1,2, Y J Cao1, Y J Yang1,2, J Li1,2, Z Hu1,2 and E-K Duan1

1 State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Science, Beijing, People’s Republic of China 100080
2 Graduate School of the Chinese Academy of Sciences, 19 Yu-quan Road, Beijing, People’s Republic of China 100039

(Requests for offprints should be addressed to E-K Duan, Institute of Zoology, Chinese Academy of Science, 25 Beisihuanxi Lu, Haidian, Beijing 100080, People’s Republic of China; Email: duane{at}ioz.ac.cn)

The expression of tetraspanin CD9 was found on blastocysts in mice and endometrium epithelial cells in human and bovine. However, it remains unknown how CD9 is involved in the precise dialogue between embryo and uterus during early pregnancy. This study was designed to investigate the functional roles of CD9 in the embryo implantation with monoclonal antibody against CD9 protein (anti-CD9 mAb) and antisense oligonucleotide against CD9 gene (AS-CD9). Our results showed that intrauterine injection of anti-CD9 mAb on day 4 of pregnancy significantly increased the number of embryos implanted (7.24±0.39 versus 4.04±0.38). In vitro, anti-CD9 mAb or AS-CD9 significantly enhanced embryo-outgrowth ability on the monolayer of uterus epithelial cells in a dose-dependent manner. However, the attachment of blastocysts to epithelial cells was unaffected. Furthermore, we found that anti-CD9 mAb or AS-CD9 stimulated matrix metalloproteinase 2 (MMP-2) production of blastocysts on Fibronectin. LY294002, a specific inhibitor of phosphoinositide 3-kinase, was able to counteract the effect of anti-CD9 mAb and AS-CD9 on outgrowth ability and production of MMP-2. Our results indicated that CD9 played a role of inhibiting embryo implantation. CD9 was able to impair embryo invasion and the production of MMP-2 through the phosphoinositide 3-kinase signaling pathway.




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