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OSR1 disruption contributes to uterine factor infertility via impaired Müllerian duct development and endometrial receptivity

Three sisters, born from consanguineous parents, manifested a unique Müllerian anomaly characterized by uterine hypoplasia with thin estrogen-unresponsive endometrium and primary amenorrhea, but with spontaneous tubal pregnancies. Through whole-exome sequencing followed by comprehensive genetic anal...

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Autores principales: Lofrano-Porto, Adriana, Pereira, Sidney Alcântara, Dauber, Andrew, Bloom, Jordana C.B., Fontes, Audrey N., Asimow, Naomi, de Moraes, Olívia Laquis, Araujo, Petra Ariadne T., Abreu, Ana Paula, Guo, Michael H., De Oliveira, Silviene F., Liu, Han, Lee, Charles, Kuohung, Wendy, Coelho, Michella S., Carroll, Rona S., Jiang, Rulang, Kaiser, Ursula B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10688984/
https://www.ncbi.nlm.nih.gov/pubmed/37847567
http://dx.doi.org/10.1172/JCI161701
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author Lofrano-Porto, Adriana
Pereira, Sidney Alcântara
Dauber, Andrew
Bloom, Jordana C.B.
Fontes, Audrey N.
Asimow, Naomi
de Moraes, Olívia Laquis
Araujo, Petra Ariadne T.
Abreu, Ana Paula
Guo, Michael H.
De Oliveira, Silviene F.
Liu, Han
Lee, Charles
Kuohung, Wendy
Coelho, Michella S.
Carroll, Rona S.
Jiang, Rulang
Kaiser, Ursula B.
author_facet Lofrano-Porto, Adriana
Pereira, Sidney Alcântara
Dauber, Andrew
Bloom, Jordana C.B.
Fontes, Audrey N.
Asimow, Naomi
de Moraes, Olívia Laquis
Araujo, Petra Ariadne T.
Abreu, Ana Paula
Guo, Michael H.
De Oliveira, Silviene F.
Liu, Han
Lee, Charles
Kuohung, Wendy
Coelho, Michella S.
Carroll, Rona S.
Jiang, Rulang
Kaiser, Ursula B.
author_sort Lofrano-Porto, Adriana
collection PubMed
description Three sisters, born from consanguineous parents, manifested a unique Müllerian anomaly characterized by uterine hypoplasia with thin estrogen-unresponsive endometrium and primary amenorrhea, but with spontaneous tubal pregnancies. Through whole-exome sequencing followed by comprehensive genetic analysis, a missense variant was identified in the OSR1 gene. We therefore investigated OSR1/OSR1 expression in postpubertal human uteri, and the prenatal and postnatal expression pattern of Osr1/Osr1 in murine developing Müllerian ducts (MDs) and endometrium, respectively. We then investigated whether Osr1 deletion would affect MD development, using WT and genetically engineered mice. Human uterine OSR1/OSR1 expression was found primarily in the endometrium. Mouse Osr1 was expressed prenatally in MDs and Wolffian ducts (WDs), from rostral to caudal segments, in E13.5 embryos. MDs and WDs were absent on the left side and MDs were rostrally truncated on the right side of E13.5 Osr1(–/–) embryos. Postnatally, Osr1 was expressed in mouse uteri throughout their lifespan, peaking at postnatal days 14 and 28. Osr1 protein was present primarily in uterine luminal and glandular epithelial cells and in the epithelial cells of mouse oviducts. Through this translational approach, we demonstrated that OSR1 in humans and mice is important for MD development and endometrial receptivity and may be implicated in uterine factor infertility.
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spelling pubmed-106889842023-12-01 OSR1 disruption contributes to uterine factor infertility via impaired Müllerian duct development and endometrial receptivity Lofrano-Porto, Adriana Pereira, Sidney Alcântara Dauber, Andrew Bloom, Jordana C.B. Fontes, Audrey N. Asimow, Naomi de Moraes, Olívia Laquis Araujo, Petra Ariadne T. Abreu, Ana Paula Guo, Michael H. De Oliveira, Silviene F. Liu, Han Lee, Charles Kuohung, Wendy Coelho, Michella S. Carroll, Rona S. Jiang, Rulang Kaiser, Ursula B. J Clin Invest Research Article Three sisters, born from consanguineous parents, manifested a unique Müllerian anomaly characterized by uterine hypoplasia with thin estrogen-unresponsive endometrium and primary amenorrhea, but with spontaneous tubal pregnancies. Through whole-exome sequencing followed by comprehensive genetic analysis, a missense variant was identified in the OSR1 gene. We therefore investigated OSR1/OSR1 expression in postpubertal human uteri, and the prenatal and postnatal expression pattern of Osr1/Osr1 in murine developing Müllerian ducts (MDs) and endometrium, respectively. We then investigated whether Osr1 deletion would affect MD development, using WT and genetically engineered mice. Human uterine OSR1/OSR1 expression was found primarily in the endometrium. Mouse Osr1 was expressed prenatally in MDs and Wolffian ducts (WDs), from rostral to caudal segments, in E13.5 embryos. MDs and WDs were absent on the left side and MDs were rostrally truncated on the right side of E13.5 Osr1(–/–) embryos. Postnatally, Osr1 was expressed in mouse uteri throughout their lifespan, peaking at postnatal days 14 and 28. Osr1 protein was present primarily in uterine luminal and glandular epithelial cells and in the epithelial cells of mouse oviducts. Through this translational approach, we demonstrated that OSR1 in humans and mice is important for MD development and endometrial receptivity and may be implicated in uterine factor infertility. American Society for Clinical Investigation 2023-12-01 /pmc/articles/PMC10688984/ /pubmed/37847567 http://dx.doi.org/10.1172/JCI161701 Text en © 2023 Lofrano-Porto et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Lofrano-Porto, Adriana
Pereira, Sidney Alcântara
Dauber, Andrew
Bloom, Jordana C.B.
Fontes, Audrey N.
Asimow, Naomi
de Moraes, Olívia Laquis
Araujo, Petra Ariadne T.
Abreu, Ana Paula
Guo, Michael H.
De Oliveira, Silviene F.
Liu, Han
Lee, Charles
Kuohung, Wendy
Coelho, Michella S.
Carroll, Rona S.
Jiang, Rulang
Kaiser, Ursula B.
OSR1 disruption contributes to uterine factor infertility via impaired Müllerian duct development and endometrial receptivity
title OSR1 disruption contributes to uterine factor infertility via impaired Müllerian duct development and endometrial receptivity
title_full OSR1 disruption contributes to uterine factor infertility via impaired Müllerian duct development and endometrial receptivity
title_fullStr OSR1 disruption contributes to uterine factor infertility via impaired Müllerian duct development and endometrial receptivity
title_full_unstemmed OSR1 disruption contributes to uterine factor infertility via impaired Müllerian duct development and endometrial receptivity
title_short OSR1 disruption contributes to uterine factor infertility via impaired Müllerian duct development and endometrial receptivity
title_sort osr1 disruption contributes to uterine factor infertility via impaired müllerian duct development and endometrial receptivity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10688984/
https://www.ncbi.nlm.nih.gov/pubmed/37847567
http://dx.doi.org/10.1172/JCI161701
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