Uterine SOX17: a key player in human endometrial receptivity and embryo implantation

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作者
Sophie Kinnear
Lois A. Salamonsen
Mathias Francois
Vincent Harley
Jemma Evans
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[1] The Hudson Institute of Medical Research,Department of Medicine
[2] Monash University,Department of Molecular and Translational Science
[3] Monash University,Institute for Molecular Bioscience
[4] University of Queensland,undefined
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Scientific Reports | / 9卷
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摘要
The yin and yang of female fertility is a complicated issue; large numbers of women/couples desire fertility and seek assisted reproduction intervention to achieve conception, while others seek to prevent pregnancy. Understanding specific molecules which control endometrial-embryo interactions is essential for both facilitating and preventing pregnancy. SOX17 has recently emerged as an important transcription factor involved in endometrial receptivity and embryo implantation. However, studies to date have examined mouse models of pregnancy which do not necessarily translate to the human. Demonstration of a role for ‘implantation factors’ in a human system is critical to provide a rationale for in depth clinical investigation and targeting of such factors. We demonstrate that SOX17is present within the receptive human endometrium and is up-regulated within human endometrial epithelial cells by combined estrogen & progesterone, the hormonal milieu during the receptive window. SOX17 localizes to the point of adhesive contact between human endometrial epithelial cells and a human ‘embryo mimic’ model (trophectodermal spheroid). Targeting SOX17 in endometrial epithelial cells using CRISPR/Cas9 knockdown or a SOX-F family inhibitor, MCC177, significantly inhibited adhesion of an trophectodermal spheroids to the epithelial cells thereby preventing ‘implantation’. These data confirm the important role of endometrial SOX17 in human endometrial receptivity and embryo implantation.
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[1]  
Fogarty NME(2017)Genome editing reveals a role for OCT4 in human embryogenesis Nature 550 67-73
[2]  
Harton GL(2013)Diminished effect of maternal age on implantation after preimplantation genetic diagnosis with array comparative genomic hybridization Fertil Steril 100 1695-1703
[3]  
Diaz-Gimeno P(2011)A genomic diagnostic tool for human endometrial receptivity based on the transcriptomic signature Fertil Steril 95 60 e51-15
[4]  
Achache H(2006)Endometrial receptivity markers, the journey to successful embryo implantation Hum Reprod Update 12 731-746
[5]  
Revel A(2003)The endometrium as a cause of implantation failure Best Pract Res Clin Obstet Gynaecol 17 289-307
[6]  
Sharkey AM(2016)Mouse Sox17 haploinsufficiency leads to female subfertility due to impaired implantation Sci Rep 6 167-170
[7]  
Smith SK(2002)Twenty pairs of sox: extent, homology, and nomenclature of the mouse and human sox transcription factor gene families Dev Cell 3 2367-2379
[8]  
Hirate Y(2002)Depletion of definitive gut endoderm in Sox17-null mutant mice Development 129 539-544
[9]  
Schepers GE(2007)Redundant roles of Sox17 and Sox18 in early cardiovascular development of mouse embryos Biochem Biophys Res Commun 360 253-268
[10]  
Teasdale RD(2015)SOX17 is a critical specifier of human primordial germ cell fate Cell 160 470-483