Alternative splicing of CADM1 is associated with endothelial progenitor cell dysfunction in preeclampsia

Ricarda Welz1, Dhanya Ramachandran1, Bianca Schröder-Heurich1

  • 1Gynaecology Research Unit, Department of Gynaecology and Obstetrics, Hannover Medical School, Hannover, Germany.

Physiological Genomics
|February 10, 2025
PubMed

Insights

Aberrant splicing of CADM1 in fetal endothelial cells is linked to preeclampsia, potentially impacting offspring cardiovascular health. This finding highlights a novel mechanism contributing to pregnancy complications.

Area of Science:

  • Cardiovascular Biology
  • Genetics and Genomics
  • Reproductive Medicine

Background:

  • Preeclampsia is a pregnancy hypertensive disorder linked to postpartum cardiovascular risks for mother and child.
  • Cord blood endothelial colony-forming cells (ECFCs) show dysfunction in preeclampsia, with alternative splicing dysregulation as a potential cause.
  • Understanding the specific molecular mechanisms in fetal ECFCs is crucial for addressing preeclampsia's long-term consequences.

Purpose of the Study:

  • To identify specific alternative splicing targets in fetal ECFCs from preeclamptic pregnancies.
  • To investigate the functional consequences of identified splicing alterations on ECFC behavior.
  • To explore the role of aberrant CADM1 splicing in the pathogenesis of preeclampsia and its offspring cardiovascular sequelae.

Main Methods:

  • Performed transcriptome-wide differential splicing analysis on ECFCs from preeclamptic (n=16) and normal (n=13) pregnancies.
  • Validated splicing events using fragment length analysis and Sanger sequencing.
  • Utilized in vitro splice switching with antisense morpholinos and performed migration and angiogenesis assays on ECFCs.

Main Results:

  • Identified significantly increased abundance of the CADM1 isoform ENST00000542447 (exon 8 skipping) in preeclamptic ECFCs (P=0.002).
  • Confirmed that CADM1 exon 8 skipping in normal ECFCs phenocopies preeclampsia-like characteristics.
  • Demonstrated that induced CADM1 exon 8 skipping decreases ECFC migration (PANOVA = 0.005) and tubule formation (PANOVA = 0.02).

Conclusions:

  • Aberrant splicing of CADM1, specifically exon 8 skipping, is upregulated in fetal ECFCs from preeclamptic pregnancies.
  • This splicing alteration impairs ECFC function, reducing migration and angiogenesis.
  • Dysregulated CADM1 splicing may contribute to cardiovascular sequelae in offspring of preeclamptic mothers.

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