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SLC20a1/PiT-1 is required for chorioallantoic placental morphogenesis

The placenta mediates the transport of nutrients, such as inorganic phosphate (P(i)), between the maternal and fetal circulatory systems. The placenta itself also requires high levels of nutrient uptake as it develops to provide critical support for fetal development. This study aimed to determine p...

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Autores principales: Correia-Branco, Ana, Mei, Ariel, Pillai, Sreehari, Jayaraman, Nirmala, Sharma, Radhika, Paquette, Alison G, Neradugomma, Naveen K, Benson, Ciara, Chavkin, Nicholas W, Mao, Qingcheng, Wallingford, Mary C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10160536/
https://www.ncbi.nlm.nih.gov/pubmed/36795703
http://dx.doi.org/10.1530/VB-22-0018
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author Correia-Branco, Ana
Mei, Ariel
Pillai, Sreehari
Jayaraman, Nirmala
Sharma, Radhika
Paquette, Alison G
Neradugomma, Naveen K
Benson, Ciara
Chavkin, Nicholas W
Mao, Qingcheng
Wallingford, Mary C
author_facet Correia-Branco, Ana
Mei, Ariel
Pillai, Sreehari
Jayaraman, Nirmala
Sharma, Radhika
Paquette, Alison G
Neradugomma, Naveen K
Benson, Ciara
Chavkin, Nicholas W
Mao, Qingcheng
Wallingford, Mary C
author_sort Correia-Branco, Ana
collection PubMed
description The placenta mediates the transport of nutrients, such as inorganic phosphate (P(i)), between the maternal and fetal circulatory systems. The placenta itself also requires high levels of nutrient uptake as it develops to provide critical support for fetal development. This study aimed to determine placental P(i) transport mechanisms using in vitro and in vivo models. We observed that P(i) (P(33)) uptake in BeWo cells is sodium dependent and that SLC20A1/Slc20a1 is the most highly expressed placental sodium-dependent transporter in mouse (microarray), human cell line (RT-PCR) and term placenta (RNA-seq), supporting that normal growth and maintenance of the mouse and human placenta requires SLC20A1/Slc20a1. Slc20a1 wild-type (Slc20a1(+/+)) and knockout (Slc20a1(–/–)) mice were produced through timed intercrosses and displayed yolk sac angiogenesis failure as expected at E10.5. E9.5 tissues were analyzed to test whether placental morphogenesis requires Slc20a1. At E9.5, the developing placenta was reduced in size in Slc20a1(–/–). Multiple structural abnormalities were also observed in the Slc20a1(–/–)chorioallantois. We determined that monocarboxylate transporter 1 protein (MCT1+) cells were reduced in developing Slc20a1(–/–)placenta, confirming that Slc20a1 loss reduced trophoblast syncytiotrophoblast 1 (SynT-I) coverage. Next, we examined the cell type-specific Slc20a1 expression and SynT molecular pathways in silico and identified Notch/Wnt as a pathway of interest that regulates trophoblast differentiation. We further observed that specific trophoblast lineages express Notch/Wnt genes that associate with endothelial cell tip-and-stalk cell markers. In conclusion, our findings support that Slc20a1 mediates the symport of P(i) into SynT cells, providing critical support for their differentiation and angiogenic mimicry function at the developing maternal–fetal interface.
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spelling pubmed-101605362023-05-06 SLC20a1/PiT-1 is required for chorioallantoic placental morphogenesis Correia-Branco, Ana Mei, Ariel Pillai, Sreehari Jayaraman, Nirmala Sharma, Radhika Paquette, Alison G Neradugomma, Naveen K Benson, Ciara Chavkin, Nicholas W Mao, Qingcheng Wallingford, Mary C Vasc Biol Research The placenta mediates the transport of nutrients, such as inorganic phosphate (P(i)), between the maternal and fetal circulatory systems. The placenta itself also requires high levels of nutrient uptake as it develops to provide critical support for fetal development. This study aimed to determine placental P(i) transport mechanisms using in vitro and in vivo models. We observed that P(i) (P(33)) uptake in BeWo cells is sodium dependent and that SLC20A1/Slc20a1 is the most highly expressed placental sodium-dependent transporter in mouse (microarray), human cell line (RT-PCR) and term placenta (RNA-seq), supporting that normal growth and maintenance of the mouse and human placenta requires SLC20A1/Slc20a1. Slc20a1 wild-type (Slc20a1(+/+)) and knockout (Slc20a1(–/–)) mice were produced through timed intercrosses and displayed yolk sac angiogenesis failure as expected at E10.5. E9.5 tissues were analyzed to test whether placental morphogenesis requires Slc20a1. At E9.5, the developing placenta was reduced in size in Slc20a1(–/–). Multiple structural abnormalities were also observed in the Slc20a1(–/–)chorioallantois. We determined that monocarboxylate transporter 1 protein (MCT1+) cells were reduced in developing Slc20a1(–/–)placenta, confirming that Slc20a1 loss reduced trophoblast syncytiotrophoblast 1 (SynT-I) coverage. Next, we examined the cell type-specific Slc20a1 expression and SynT molecular pathways in silico and identified Notch/Wnt as a pathway of interest that regulates trophoblast differentiation. We further observed that specific trophoblast lineages express Notch/Wnt genes that associate with endothelial cell tip-and-stalk cell markers. In conclusion, our findings support that Slc20a1 mediates the symport of P(i) into SynT cells, providing critical support for their differentiation and angiogenic mimicry function at the developing maternal–fetal interface. Bioscientifica Ltd 2023-02-16 /pmc/articles/PMC10160536/ /pubmed/36795703 http://dx.doi.org/10.1530/VB-22-0018 Text en © the author(s) https://creativecommons.org/licenses/by-nc/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. (https://creativecommons.org/licenses/by-nc/4.0/)
spellingShingle Research
Correia-Branco, Ana
Mei, Ariel
Pillai, Sreehari
Jayaraman, Nirmala
Sharma, Radhika
Paquette, Alison G
Neradugomma, Naveen K
Benson, Ciara
Chavkin, Nicholas W
Mao, Qingcheng
Wallingford, Mary C
SLC20a1/PiT-1 is required for chorioallantoic placental morphogenesis
title SLC20a1/PiT-1 is required for chorioallantoic placental morphogenesis
title_full SLC20a1/PiT-1 is required for chorioallantoic placental morphogenesis
title_fullStr SLC20a1/PiT-1 is required for chorioallantoic placental morphogenesis
title_full_unstemmed SLC20a1/PiT-1 is required for chorioallantoic placental morphogenesis
title_short SLC20a1/PiT-1 is required for chorioallantoic placental morphogenesis
title_sort slc20a1/pit-1 is required for chorioallantoic placental morphogenesis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10160536/
https://www.ncbi.nlm.nih.gov/pubmed/36795703
http://dx.doi.org/10.1530/VB-22-0018
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