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JMJD6 Dysfunction Due to Iron Deficiency in Preeclampsia Disrupts Fibronectin Homeostasis Resulting in Diminished Trophoblast Migration
by
Farrell, Abby
, Gillmore, Taylor
, Litvack, Michael
, Post, Martin
, Caniggia, Isabella
, Park, Chanho
, Roberts, Sarah
, Alahari, Sruthi
, Ermini, Leonardo
, Sallais, Julien
in
Cell and Developmental Biology
/ Cell migration
/ Degradation
/ Enzymes
/ Ethics
/ Extracellular matrix
/ Fibronectin
/ Glycosylation
/ Gynecology
/ Homeostasis
/ Hydroxylation
/ Hypoxia
/ iron
/ Iron deficiency
/ JMJD6
/ Lysosomes
/ Mesenchyme
/ Pathogenesis
/ Phenotypes
/ Placenta
/ Plasmids
/ pMSCs
/ Pre-eclampsia
/ Preeclampsia
/ Pregnancy complications
/ Proteins
/ trophoblast migration
2021
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JMJD6 Dysfunction Due to Iron Deficiency in Preeclampsia Disrupts Fibronectin Homeostasis Resulting in Diminished Trophoblast Migration
by
Farrell, Abby
, Gillmore, Taylor
, Litvack, Michael
, Post, Martin
, Caniggia, Isabella
, Park, Chanho
, Roberts, Sarah
, Alahari, Sruthi
, Ermini, Leonardo
, Sallais, Julien
in
Cell and Developmental Biology
/ Cell migration
/ Degradation
/ Enzymes
/ Ethics
/ Extracellular matrix
/ Fibronectin
/ Glycosylation
/ Gynecology
/ Homeostasis
/ Hydroxylation
/ Hypoxia
/ iron
/ Iron deficiency
/ JMJD6
/ Lysosomes
/ Mesenchyme
/ Pathogenesis
/ Phenotypes
/ Placenta
/ Plasmids
/ pMSCs
/ Pre-eclampsia
/ Preeclampsia
/ Pregnancy complications
/ Proteins
/ trophoblast migration
2021
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JMJD6 Dysfunction Due to Iron Deficiency in Preeclampsia Disrupts Fibronectin Homeostasis Resulting in Diminished Trophoblast Migration
by
Farrell, Abby
, Gillmore, Taylor
, Litvack, Michael
, Post, Martin
, Caniggia, Isabella
, Park, Chanho
, Roberts, Sarah
, Alahari, Sruthi
, Ermini, Leonardo
, Sallais, Julien
in
Cell and Developmental Biology
/ Cell migration
/ Degradation
/ Enzymes
/ Ethics
/ Extracellular matrix
/ Fibronectin
/ Glycosylation
/ Gynecology
/ Homeostasis
/ Hydroxylation
/ Hypoxia
/ iron
/ Iron deficiency
/ JMJD6
/ Lysosomes
/ Mesenchyme
/ Pathogenesis
/ Phenotypes
/ Placenta
/ Plasmids
/ pMSCs
/ Pre-eclampsia
/ Preeclampsia
/ Pregnancy complications
/ Proteins
/ trophoblast migration
2021
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JMJD6 Dysfunction Due to Iron Deficiency in Preeclampsia Disrupts Fibronectin Homeostasis Resulting in Diminished Trophoblast Migration
Journal Article
JMJD6 Dysfunction Due to Iron Deficiency in Preeclampsia Disrupts Fibronectin Homeostasis Resulting in Diminished Trophoblast Migration
2021
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Overview
The mechanisms contributing to excessive fibronectin in preeclampsia, a pregnancy-related disorder, remain unknown. Herein, we investigated the role of JMJD6, an O 2 - and Fe 2+ -dependent enzyme, in mediating placental fibronectin processing and function. MALDI-TOF identified fibronectin as a novel target of JMJD6-mediated lysyl hydroxylation, preceding fibronectin glycosylation, deposition, and degradation. In preeclamptic placentae, fibronectin accumulated primarily in lysosomes of the mesenchyme. Using primary placental mesenchymal cells (pMSCs), we found that fibronectin fibril formation and turnover were markedly impeded in preeclamptic pMSCs, partly due to impaired lysosomal degradation. JMJD6 knockdown in control pMSCs recapitulated the preeclamptic FN phenotype. Importantly, preeclamptic pMSCs had less total and labile Fe 2+ and Hinokitiol treatment rescued fibronectin assembly and promoted lysosomal degradation. Time-lapse imaging demonstrated that defective ECM deposition by preeclamptic pMSCs impeded HTR-8/SVneo cell migration, which was rescued upon Hinokitiol exposure. Our findings reveal new Fe 2+ -dependent mechanisms controlling fibronectin homeostasis/function in the placenta that go awry in preeclampsia.
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