The overall objective of this proposal is to define the essential molecular mechanisms that underlie uterine receptivity. Ovarian-derived progesterone is known to be an indispensable signaling molecule in the preparation of the uterus for embryo attachment and subsequent invasion Using the progesterone receptor knockout mouse in combination with DNA microarray technology, we recently demonstrated that the morphogen, Indian hedgehog, Ihh, is expressed in the murine uterus and, importantly, regulated by progesterone via its nuclear receptor. This important observation forms the basis of the following hypothesis: The Indian hedgehog signaling pathway is an integral regulatory axis for the preparation of the uterus for embryonic implantation. This proposal will establish a novel mouse model for the reproductive tissue specific ablation of Ihh and then evaluate the impact of Ihh ablation on uterine function. Then, this proposal will investigate the expression of members of the Ihh signaling cascade in human endometrial tissue. Then, this proposal will investigate the expression of members of the Ihh signaling cascade in human endometrial tissue. The goals of this proposal will be achieved by using Homologous recombination in ES cells to insert Cre recombinase into the progesterone receptor locus. This mouse will be used to ablate Ihh specifically in the uterus and mouse reproductive tissues. The physiologic and molecular impact of Ihh ablation in the uterus will then be investigated. Finally the expression of Ihh in the receptive and non-receptive human endometrium will be investigated. The contribution of this proposal to the U01 consortium will be the establishment of a novel animal model that will facilitate the investigation of the role of regulatory molecule sin uterine receptivity, as well as, the investigation of the role and expression of members of the Ihh signaling cascade in mouse and human receptivity.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Research Project--Cooperative Agreements (U01)
Project #
5U01HD042311-05
Application #
7036586
Study Section
Special Emphasis Panel (ZHD1-RRG-K (12))
Program Officer
Tasca, Richard J
Project Start
2002-04-01
Project End
2009-03-31
Budget Start
2006-04-01
Budget End
2009-03-31
Support Year
5
Fiscal Year
2006
Total Cost
$329,717
Indirect Cost
Name
Baylor College of Medicine
Department
Anatomy/Cell Biology
Type
Schools of Medicine
DUNS #
051113330
City
Houston
State
TX
Country
United States
Zip Code
77030
Hai, Lan; Szwarc, Maria M; He, Bin et al. (2018) Uterine function in the mouse requires speckle-type poz protein. Biol Reprod 98:856-869
Hai, Lan; Szwarc, Maria M; Wetendorf, Margeaux et al. (2018) A mouse model engineered to conditionally express the progesterone receptor-B isoform. Genesis 56:e23223
Szwarc, Maria M; Kommagani, Ramakrishna; Peavey, Mary C et al. (2017) A bioluminescence reporter mouse that monitors expression of constitutively active ?-catenin. PLoS One 12:e0173014
Monsivais, Diana; Clementi, Caterina; Peng, Jia et al. (2016) Uterine ALK3 is essential during the window of implantation. Proc Natl Acad Sci U S A 113:E387-95
Szwarc, Maria M; Kommagani, Ramakrishna; Jeong, Jae-Wook et al. (2014) Perturbing the cellular levels of steroid receptor coactivator-2 impairs murine endometrial function. PLoS One 9:e98664
Hewitt, Sylvia C; Li, Leping; Grimm, Sara A et al. (2014) Novel DNA motif binding activity observed in vivo with an estrogen receptor ? mutant mouse. Mol Endocrinol 28:899-911
Kommagani, Ramakrishna; Szwarc, Maria M; Kovanci, Ertug et al. (2013) Acceleration of the glycolytic flux by steroid receptor coactivator-2 is essential for endometrial decidualization. PLoS Genet 9:e1003900
Fernandez-Valdivia, Rodrigo; Jeong, Jaewook; Mukherjee, Atish et al. (2010) A mouse model to dissect progesterone signaling in the female reproductive tract and mammary gland. Genesis 48:106-13
Jeong, Jae-Wook; Lee, Hee Sun; Lee, Kevin Y et al. (2009) Mig-6 modulates uterine steroid hormone responsiveness and exhibits altered expression in endometrial disease. Proc Natl Acad Sci U S A 106:8677-82
Fernandez-Valdivia, Rodrigo; Mukherjee, Atish; Ying, Yan et al. (2009) The RANKL signaling axis is sufficient to elicit ductal side-branching and alveologenesis in the mammary gland of the virgin mouse. Dev Biol 328:127-39

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