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The Effects of Early-Onset Pre-Eclampsia on Placental Creatine Metabolism in the Third Trimester

Creatine is a metabolite important for cellular energy homeostasis as it provides spatio-temporal adenosine triphosphate (ATP) buffering for cells with fluctuating energy demands. Here, we examined whether placental creatine metabolism was altered in cases of early-onset pre-eclampsia (PE), a condit...

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Autores principales: Ellery, Stacey J., Murthi, Padma, Della Gatta, Paul A., May, Anthony K., Davies-Tuck, Miranda L., Kowalski, Greg M., Callahan, Damien L., Bruce, Clinton R., Wallace, Euan M., Walker, David W., Dickinson, Hayley, Snow, Rod J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7036877/
https://www.ncbi.nlm.nih.gov/pubmed/31991880
http://dx.doi.org/10.3390/ijms21030806
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author Ellery, Stacey J.
Murthi, Padma
Della Gatta, Paul A.
May, Anthony K.
Davies-Tuck, Miranda L.
Kowalski, Greg M.
Callahan, Damien L.
Bruce, Clinton R.
Wallace, Euan M.
Walker, David W.
Dickinson, Hayley
Snow, Rod J.
author_facet Ellery, Stacey J.
Murthi, Padma
Della Gatta, Paul A.
May, Anthony K.
Davies-Tuck, Miranda L.
Kowalski, Greg M.
Callahan, Damien L.
Bruce, Clinton R.
Wallace, Euan M.
Walker, David W.
Dickinson, Hayley
Snow, Rod J.
author_sort Ellery, Stacey J.
collection PubMed
description Creatine is a metabolite important for cellular energy homeostasis as it provides spatio-temporal adenosine triphosphate (ATP) buffering for cells with fluctuating energy demands. Here, we examined whether placental creatine metabolism was altered in cases of early-onset pre-eclampsia (PE), a condition known to cause placental metabolic dysfunction. We studied third trimester human placentae collected between 27–40 weeks’ gestation from women with early-onset PE (n = 20) and gestation-matched normotensive control pregnancies (n = 20). Placental total creatine and creatine precursor guanidinoacetate (GAA) content were measured. mRNA expression of the creatine synthesizing enzymes arginine:glycine aminotransferase (GATM) and guanidinoacetate methyltransferase (GAMT), the creatine transporter (SLC6A8), and the creatine kinases (mitochondrial CKMT1A & cytosolic BBCK) was assessed. Placental protein levels of arginine:glycine aminotransferase (AGAT), GAMT, CKMT1A and BBCK were also determined. Key findings; total creatine content of PE placentae was 38% higher than controls (p < 0.01). mRNA expression of GATM (p < 0.001), GAMT (p < 0.001), SLC6A8 (p = 0.021) and BBCK (p < 0.001) was also elevated in PE placentae. No differences in GAA content, nor protein levels of AGAT, GAMT, BBCK or CKMT1A were observed between cohorts. Advancing gestation and birth weight were associated with a down-regulation in placental GATM mRNA expression, and a reduction in GAA content, in control placentae. These relationships were absent in PE cases. Our results suggest PE placentae may have an ongoing reliance on the creatine kinase circuit for maintenance of cellular energetics with increased total creatine content and transcriptional changes to creatine synthesizing enzymes and the creatine transporter. Understanding the functional consequences of these changes warrants further investigation.
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spelling pubmed-70368772020-03-11 The Effects of Early-Onset Pre-Eclampsia on Placental Creatine Metabolism in the Third Trimester Ellery, Stacey J. Murthi, Padma Della Gatta, Paul A. May, Anthony K. Davies-Tuck, Miranda L. Kowalski, Greg M. Callahan, Damien L. Bruce, Clinton R. Wallace, Euan M. Walker, David W. Dickinson, Hayley Snow, Rod J. Int J Mol Sci Article Creatine is a metabolite important for cellular energy homeostasis as it provides spatio-temporal adenosine triphosphate (ATP) buffering for cells with fluctuating energy demands. Here, we examined whether placental creatine metabolism was altered in cases of early-onset pre-eclampsia (PE), a condition known to cause placental metabolic dysfunction. We studied third trimester human placentae collected between 27–40 weeks’ gestation from women with early-onset PE (n = 20) and gestation-matched normotensive control pregnancies (n = 20). Placental total creatine and creatine precursor guanidinoacetate (GAA) content were measured. mRNA expression of the creatine synthesizing enzymes arginine:glycine aminotransferase (GATM) and guanidinoacetate methyltransferase (GAMT), the creatine transporter (SLC6A8), and the creatine kinases (mitochondrial CKMT1A & cytosolic BBCK) was assessed. Placental protein levels of arginine:glycine aminotransferase (AGAT), GAMT, CKMT1A and BBCK were also determined. Key findings; total creatine content of PE placentae was 38% higher than controls (p < 0.01). mRNA expression of GATM (p < 0.001), GAMT (p < 0.001), SLC6A8 (p = 0.021) and BBCK (p < 0.001) was also elevated in PE placentae. No differences in GAA content, nor protein levels of AGAT, GAMT, BBCK or CKMT1A were observed between cohorts. Advancing gestation and birth weight were associated with a down-regulation in placental GATM mRNA expression, and a reduction in GAA content, in control placentae. These relationships were absent in PE cases. Our results suggest PE placentae may have an ongoing reliance on the creatine kinase circuit for maintenance of cellular energetics with increased total creatine content and transcriptional changes to creatine synthesizing enzymes and the creatine transporter. Understanding the functional consequences of these changes warrants further investigation. MDPI 2020-01-26 /pmc/articles/PMC7036877/ /pubmed/31991880 http://dx.doi.org/10.3390/ijms21030806 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ellery, Stacey J.
Murthi, Padma
Della Gatta, Paul A.
May, Anthony K.
Davies-Tuck, Miranda L.
Kowalski, Greg M.
Callahan, Damien L.
Bruce, Clinton R.
Wallace, Euan M.
Walker, David W.
Dickinson, Hayley
Snow, Rod J.
The Effects of Early-Onset Pre-Eclampsia on Placental Creatine Metabolism in the Third Trimester
title The Effects of Early-Onset Pre-Eclampsia on Placental Creatine Metabolism in the Third Trimester
title_full The Effects of Early-Onset Pre-Eclampsia on Placental Creatine Metabolism in the Third Trimester
title_fullStr The Effects of Early-Onset Pre-Eclampsia on Placental Creatine Metabolism in the Third Trimester
title_full_unstemmed The Effects of Early-Onset Pre-Eclampsia on Placental Creatine Metabolism in the Third Trimester
title_short The Effects of Early-Onset Pre-Eclampsia on Placental Creatine Metabolism in the Third Trimester
title_sort effects of early-onset pre-eclampsia on placental creatine metabolism in the third trimester
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7036877/
https://www.ncbi.nlm.nih.gov/pubmed/31991880
http://dx.doi.org/10.3390/ijms21030806
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