Homeobox genes in endometrium: from development to decidualization

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This review identifies HOXA10 as a master regulator of endometrial development and decidualization, highlighting its critical role in embryo implantation and its deregulation in endometriosis.

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This review examines the role of homeobox genes, particularly HOXA10, in uterine development and adult endometrial function. It details how HOXA10 regulates anterio-posterior segmentation of Müllerian ducts and controls cyclic expression in the adult endometrium under ovarian steroid influence. The paper outlines a three-step process for embryo implantation involving receptivity acquisition, decidualization response, and trophoblast invasion, noting that HOXA10 is downregulated after decidualization to facilitate placental formation. Additionally, it highlights evidence that HOXA10 expression is deregulated in various endometriopathies, including endometriosis and endometrial cancers. This paper is centrally about endometriosis — specifically discussing how HOXA10 deregulation contributes to the pathophysiology of the condition alongside other endometriopathies.

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Abstract

The eutherian species evolved an elaborate uterus to allow viviparity. For successful pregnancy, the uterus must not only be differentiated, but must also function optimally and any defects in uterus differentiation and/or function can lead to infertility. The homoebox gene HOXA10 has emerged to be a key player in both uterine development and its optimal functioning in adulthood. Within the Abd-B family, the posterior Hoxa genes play a dominant role in anterio-posterior segmentation of the Müllerian ducts in mammals, with Hoxa10 having a central role in uterine segmentation. In the adult endometrium, HOXA10 is expressed by endometrial cells and is regulated in a cyclic manner under the influence of ovarian steroids. During embryo implantation, expression of HOXA10 is increased in endometrial stromal cells by signals from the embryo to govern stromal cell transformation to decidual cells. Once decidualization is initiated, HOXA10 is rapidly downregulated to activate expression of pro-invasive factors to promote trophoblast invasion. We propose that HOXA10 governs embryo implantation in a three-step process: 1) acquisition of endometrial receptivity, 2) responding to signals from the blastocyst to modify receptive endometrium for decidualization 3) making the decidua conductive for trophoblast invasion and placentation. There is currently ample evidence that expression of HOXA10 is deregulated in a variety of "endometriopathies" such as endometriosis and endometrial cancers. Overall, HOXA10 appears to be the master regulator of endometrial health and a central determinant of fertility in mammals.
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Abstract

The eutherian species evolved an elaborate uterus to allow viviparity. For successful pregnancy, the uterus must not only be differentiated, but must also function optimally and any defects in uterus differentiation and/or function can lead to infertility. The homoebox gene HOXA10 has emerged to be a key player in both uterine development and its optimal functioning in adulthood. Within the Abd-B family, the posterior Hoxa genes play a dominant role in anterio-posterior segmentation of the Müllerian ducts in mammals, with Hoxa10 having a central role in uterine segmentation. In the adult endometrium, HOXA10 is expressed by endometrial cells and is regulated in a cyclic manner under the influence of ovarian steroids. During embryo implantation, expression of HOXA10 is increased in endometrial stromal cells by signals from the embryo to govern stromal cell transformation to decidual cells. Once decidualization is initiated, HOXA10 is rapidly downregulated to activate expression of pro-invasive factors to promote trophoblast invasion. We propose that HOXA10 governs embryo implantation in a three-step process: 1) acquisition of endometrial receptivity, 2) responding to signals from the blastocyst to modify receptive endometrium for decidualization 3) making the decidua conductive for trophoblast invasion and placentation. There is currently ample evidence that expression of HOXA10 is deregulated in a variety of “endometriopathies” such as endometriosis and endometrial cancers. Overall, HOXA10 appears to be the master regulator of endometrial health and a central determinant of fertility in mammals.

Keywords

HOXA10, HOX, Müllerian duct, implantation, trophoblast, invasion, pregnancy, fertility, infertility

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Condition tags

endometriosisinfertility

MeSH descriptors

Decidua Embryo Implantation Endometrium Gene Expression Regulation, Developmental Homeobox A10 Proteins Animals Cell Differentiation Decidua Decidua Endometrium Endometrium Female Homeobox A10 Proteins Homeobox A10 Proteins Humans Placentation Pregnancy

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europepmc
last seen: 2026-09-21T06:08:07.822426+00:00
pubmed
last seen: 2026-05-13T22:21:53.586419+00:00
unpaywall
last seen: 2026-05-14T19:30:52.867331+00:00
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Courtesy of the U.S. National Library of Medicine