Functional Evaluation of STOX1 (STORKHEAD-BOX PROTEIN 1) in Placentation, Preeclampsia, and Preterm Birth

Author:

Dunk Caroline E.1ORCID,van Dijk Marie2,Choudhury Ruhul34,Wright Thomas J.5ORCID,Cox Brian6,Leavey Katherine6,Harris Lynda K.374,Jones Rebecca L.34,Lye Stephen J.168

Affiliation:

1. From the Research Centre for Women’s and Infants’ Health, Lunenfeld Tanenbaum Research Institute, Mount Sinai Hospital, Sinai Health System, Toronto, Canada (C.E.D., S.J.L.)

2. Reproductive Biology Laboratory, Amsterdam University Medical Centers, the Netherlands (M.V.D.)

3. Maternal and Fetal Health Research Centre, Faculty of Biology Medicine and Health (R.C., L.K.H., R.L.J.), University of Manchester, United Kingdom

4. Academic Health Science Centre, St Mary’s Hospital, Manchester, United Kingdom (R.C., L.K.H., R.L.J.)

5. Department of Ophthalmology, Kensington Eye Institute (T.J.W.), University of Toronto, Canada.

6. Department of Physiology, Faculty of Medicine (B.C., K.L., S.J.L.), University of Toronto, Canada.

7. Division of Pharmacy and Optometry (L.K.H.), University of Manchester, United Kingdom

8. Department of Obstetrics and Gynaecology, Faculty of Medicine (S.J.L.), University of Toronto, Canada.

Abstract

Revaluation of the association of the STOX1 (STORKHEAD_BOX1 PROTEIN 1) transcription factor mutation (Y153H, C allele) with the early utero-vascular origins of placental pathology is warranted. To investigate if placental STOX1 Y153H genotype affects utero-vascular remodeling—compromised in both preterm birth and preeclampsia—we utilized extravillous trophoblast (EVT) explant and placental decidual coculture models, transfection of STOX1 wild-type and mutant plasmids into EVT-like trophoblast cell lines, and a cohort of 75 placentas from obstetric pathologies. Primary EVT and HTR8/SVneo cells carrying STOX1 Y153H secreted lower levels of IL (interleukin) 6, and IL-8, and higher CXCL16 (chemokine [C-X-C motif] ligand 16) and TRAIL (tumor necrosis factor–related apoptosis-inducing ligand) than wild-type EVT and Swan71 cells. Media from wild-type EVT or Swan71 cells transfected with wild-type STOX1 stimulated: endothelial chemokine expression, angiogenesis, and decidual natural killer cell and monocyte migration. In contrast, Y153H EVT conditioned medium, Swan71 transfected with the Y153H plasmid, or HTR8/SVneo media had no effect. Genotyping of placental decidual cocultures demonstrated association of the placental STOX1 CC allele with failed vascular remodeling. Decidual GG NODAL R165H increased in failed cocultures carrying the placental CC alleles of STOX1. Multivariate analysis of the placental cohort showed that the STOX1 C allele correlated with premature birth, with or without severe early-onset preeclampsia, and small for gestational age babies. In conclusion, placental STOX1 Y153H is a precipitating factor in preterm birth and placental preeclampsia due to defects in early utero-placental development.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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