Modeling Preeclampsia In Vitro: Polymorphic Variants of STOX1-A/B Genes Can Downregulate CD24 in Trophoblast Cell Lines

Int J Mol Sci. 2022 Dec 14;23(24):15927. doi: 10.3390/ijms232415927.

Abstract

CD24 is a mucin-like immunosuppressing glycoprotein whose levels increase during pregnancy and decrease in the syncytio- and cytotrophoblasts in early and preterm preeclampsia. We used two modified cell lines that mimic in vitro features of preeclampsia to identify if this phenomenon could be reproduced. Our model was the immortalized placental-derived BeWo and JEG-3 cell lines that overexpress the STOX1 A/B transcription factor gene that was discovered in familial forms of preeclampsia. BeWo and JEG-3 cells stably transduced with the two major isoforms of STOX1-A/B or by an empty vector (control), were propagated, harvested, and analyzed. CD24 mRNA expression was determined by quantitative real-time polymerase nuclear chain reaction (qRT-PCR). CD24 protein levels were determined by Western blots. In STOX1-A/B overexpressing in BeWo cells, CD24 mRNA was downregulated by 91 and 85%, respectively, compared to the control, and by 30% and 74%, respectively in JEG-3 cells. A 67% and 82% decrease in CD24 protein level was determined by immunoblot in BeWo overexpressing STOX1-A/B, respectively, while the reduction in JEG-3 cells was between 47 and 62%. The immortalized BeWo and JEG-3 cell lines overexpressing STOX1-A/B had reduced CD24. Although both cell lines were affected, BeWo appears to be more susceptible to downregulation by STOX-1 than JEG-3, potentially because of their different cell origin and properties. These results strengthen the in vivo results of reduced CD24 levels found in early and preterm preeclampsia. Accordingly, it implies the importance of the reduced immune tolerance in preeclampsia, which was already demonstrated in vivo in the STOX1-A/B model of preeclampsia, and is now implied in the in vitro STOX-1 model, a subject that warrants further investigations.

Keywords: BeWo cells; CD24; JEG-3 cells; STOX1-A/B; immune tolerance; in vitro preeclampsia models; placental-derived immortalized cells; preeclampsia.

MeSH terms

  • CD24 Antigen / genetics
  • CD24 Antigen / metabolism
  • Carrier Proteins / metabolism
  • Cell Line, Tumor
  • Female
  • Humans
  • Infant, Newborn
  • Placenta / metabolism
  • Pre-Eclampsia* / genetics
  • Pre-Eclampsia* / metabolism
  • Pregnancy
  • RNA, Messenger / metabolism
  • Trophoblasts* / metabolism

Substances

  • RNA, Messenger
  • CD24 protein, human
  • CD24 Antigen
  • STOX1 protein, human
  • Carrier Proteins

Grants and funding

This work was supported by a travel grant from Braude College Research Collaboration Program Grant to M.S. The work in the laboratory of D.V. was funded by the recurrent dotation of Inserm/CNRS/University attributed to the team of Daniel Vaiman and by the European Union’s Horizon 2020 Research and Innovation Programme, Grant No. 765274, acronym iPLACENTA (http://www.iplacenta.eu, accessed on 14 November 2022) to Danial Vaiman.