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Role of Foxl2 in uterine maturation and function
被引:29
|作者:
Bellessort, Brice
[1
]
Bachelot, Anne
[1
]
Heude, Eglantine
[1
]
Alfama, Gladys
[1
]
Fontaine, Anastasia
[1
]
Le Cardinal, Marine
[1
]
Treier, Mathias
[2
]
Levi, Giovanni
[1
]
机构:
[1] Museum Natl Hist Nat, CNRS UMR7221, Evolut Regulat Endocriniennes, F-75005 Paris, France
[2] Max Delbruck Ctr Mol Med MDC, Genet Metab & Reprod Disorders, D-13125 Berlin, Germany
基金:
欧盟第七框架计划;
关键词:
TRANSCRIPTION FACTOR FOXL2;
FEMALE REPRODUCTIVE-TRACT;
JUNCTIONAL ZONE;
PROGESTERONE-RECEPTOR;
BETA-CATENIN;
DEVELOPMENTAL BIOLOGY;
EMBRYO IMPLANTATION;
GLAND DEVELOPMENT;
INVERSUS SYNDROME;
ESTROUS-CYCLE;
D O I:
10.1093/hmg/ddv061
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
Foxl2 codes for a forkhead/HNF3 transcription factor essential for follicular maturation and maintenance of ovarian identity. FOXL2 mutations are associated with Blepharophimosis, Ptosis and Epicanthus inversus Syndrome (BPES) characterized by eyelid malformations (types I and II) and premature ovarian insufficiency (type I). We show that Foxl2 is not only expressed by the ovary, but also by other components of the mouse female reproductive tract, including the uterus, the cervix and the oviduct. In the uterus, Foxl2 expression is first observed in the neonatal mesenchyme and, during uterine maturation, persists in the stroma and in the deep inner myometrial layer (IML). In the adult, Foxl2 is expressed in the differentiated stromal layer, but no longer in the myometrium. Conditional deletion of Foxl2 in the postnatal (PN) uterus using Progesterone Receptor-cre (Pgr(cre/+)) mice results in infertility. During PN uterine maturation Pgr(cre/+); Foxl2(flox/flox) mice present a severely reduced thickness of the stroma layer and an hypertrophic, disorganized IML. In adult Pgr(cre/+); Foxl2(flox/flox) mice a supplementary muscular layer is present at the stroma/myometrium border and vascular smooth muscle cells fail to form a coherent layer around uterine arteries. Wnt signalling pathways play a central role in uterine maturation; in Pgr(cre/+); Foxl2(flox/flox) mice, Wnt genes are deregulated suggesting that Foxl2 acts through these signals. In humans, thickening of the IML (also called "junctional zone") is associated with reduced fertility, endometriosis and adenomyosis. Our data suggest that Foxl2 has a crucial role in PN uterine maturation and could help to understand sub-fertility predisposition in women.
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页码:3092 / 3103
页数:12
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