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STOX1 deficiency is associated with renin-mediated gestational hypertension and placental defects

The pathogenesis of preeclampsia and other hypertensive disorders of pregnancy remains poorly defined despite the substantial burden of maternal and neonatal morbidity associated with these conditions. In particular, the role of genetic variants as determinants of disease susceptibility is understud...

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Autores principales: Parchem, Jacqueline G., Kanasaki, Keizo, Lee, Soo Bong, Kanasaki, Megumi, Yang, Joyce L., Xu, Yong, Earl, Kadeshia M., Keuls, Rachel A., Gattone, Vincent H., Kalluri, Raghu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7934881/
https://www.ncbi.nlm.nih.gov/pubmed/33301424
http://dx.doi.org/10.1172/jci.insight.141588
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author Parchem, Jacqueline G.
Kanasaki, Keizo
Lee, Soo Bong
Kanasaki, Megumi
Yang, Joyce L.
Xu, Yong
Earl, Kadeshia M.
Keuls, Rachel A.
Gattone, Vincent H.
Kalluri, Raghu
author_facet Parchem, Jacqueline G.
Kanasaki, Keizo
Lee, Soo Bong
Kanasaki, Megumi
Yang, Joyce L.
Xu, Yong
Earl, Kadeshia M.
Keuls, Rachel A.
Gattone, Vincent H.
Kalluri, Raghu
author_sort Parchem, Jacqueline G.
collection PubMed
description The pathogenesis of preeclampsia and other hypertensive disorders of pregnancy remains poorly defined despite the substantial burden of maternal and neonatal morbidity associated with these conditions. In particular, the role of genetic variants as determinants of disease susceptibility is understudied. Storkhead-box protein 1 (STOX1) was first identified as a preeclampsia risk gene through family-based genetic linkage studies in which loss-of-function variants were proposed to underlie increased preeclampsia susceptibility. We generated a genetic Stox1 loss-of-function mouse model (Stox1 KO) to evaluate whether STOX1 regulates blood pressure in pregnancy. Pregnant Stox1-KO mice developed gestational hypertension evidenced by a significant increase in blood pressure compared with WT by E17.5. While severe renal, placental, or fetal growth abnormalities were not observed, the Stox1-KO phenotype was associated with placental vascular and extracellular matrix abnormalities. Mechanistically, we found that gestational hypertension in Stox1-KO mice resulted from activation of the uteroplacental renin-angiotensin system. This mechanism was supported by showing that treatment of pregnant Stox1-KO mice with an angiotensin II receptor blocker rescued the phenotype. Our study demonstrates the utility of genetic mouse models for uncovering links between genetic variants and effector pathways implicated in the pathogenesis of hypertensive disorders of pregnancy.
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spelling pubmed-79348812021-03-09 STOX1 deficiency is associated with renin-mediated gestational hypertension and placental defects Parchem, Jacqueline G. Kanasaki, Keizo Lee, Soo Bong Kanasaki, Megumi Yang, Joyce L. Xu, Yong Earl, Kadeshia M. Keuls, Rachel A. Gattone, Vincent H. Kalluri, Raghu JCI Insight Research Article The pathogenesis of preeclampsia and other hypertensive disorders of pregnancy remains poorly defined despite the substantial burden of maternal and neonatal morbidity associated with these conditions. In particular, the role of genetic variants as determinants of disease susceptibility is understudied. Storkhead-box protein 1 (STOX1) was first identified as a preeclampsia risk gene through family-based genetic linkage studies in which loss-of-function variants were proposed to underlie increased preeclampsia susceptibility. We generated a genetic Stox1 loss-of-function mouse model (Stox1 KO) to evaluate whether STOX1 regulates blood pressure in pregnancy. Pregnant Stox1-KO mice developed gestational hypertension evidenced by a significant increase in blood pressure compared with WT by E17.5. While severe renal, placental, or fetal growth abnormalities were not observed, the Stox1-KO phenotype was associated with placental vascular and extracellular matrix abnormalities. Mechanistically, we found that gestational hypertension in Stox1-KO mice resulted from activation of the uteroplacental renin-angiotensin system. This mechanism was supported by showing that treatment of pregnant Stox1-KO mice with an angiotensin II receptor blocker rescued the phenotype. Our study demonstrates the utility of genetic mouse models for uncovering links between genetic variants and effector pathways implicated in the pathogenesis of hypertensive disorders of pregnancy. American Society for Clinical Investigation 2021-01-25 /pmc/articles/PMC7934881/ /pubmed/33301424 http://dx.doi.org/10.1172/jci.insight.141588 Text en © 2021 Parchem et al. http://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/.
spellingShingle Research Article
Parchem, Jacqueline G.
Kanasaki, Keizo
Lee, Soo Bong
Kanasaki, Megumi
Yang, Joyce L.
Xu, Yong
Earl, Kadeshia M.
Keuls, Rachel A.
Gattone, Vincent H.
Kalluri, Raghu
STOX1 deficiency is associated with renin-mediated gestational hypertension and placental defects
title STOX1 deficiency is associated with renin-mediated gestational hypertension and placental defects
title_full STOX1 deficiency is associated with renin-mediated gestational hypertension and placental defects
title_fullStr STOX1 deficiency is associated with renin-mediated gestational hypertension and placental defects
title_full_unstemmed STOX1 deficiency is associated with renin-mediated gestational hypertension and placental defects
title_short STOX1 deficiency is associated with renin-mediated gestational hypertension and placental defects
title_sort stox1 deficiency is associated with renin-mediated gestational hypertension and placental defects
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7934881/
https://www.ncbi.nlm.nih.gov/pubmed/33301424
http://dx.doi.org/10.1172/jci.insight.141588
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