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Updated: May 28, 2025

Detection of Alternative Splicing During Epithelial-Mesenchymal Transition
Published on: October 9, 2014
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.
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.
Abstract:
Preeclampsia is a pregnancy-specific hypertensive disorder and is associated with an increased postpartum risk of cardiovascular morbidity for both women and their offspring. Previous studies have indicated that cord blood endothelial colony-forming cells (ECFCs) are dysfunctional in preeclampsia. The specific mechanisms are not yet fully understood, but dysregulation of alternative splicing has been proposed as one of the pathogenic pathways. To identify specific targets of alternative splicing in fetal ECFCs, we performed transcriptome-wide differential splicing analyses between cord blood ECFCs from preeclamptic (n = 16) and normal pregnancies (n = 13). Selected splicing events were validated using fragment length analysis and Sanger sequencing. In silico transcriptome-wide differential splicing analysis identified a significantly increased abundance of the CADM1 isoform ENST00000542447 in the preeclamptic cohort (P = 0.002), which was confirmed by wet-lab validation. The deleted exon 8 harbors glycosylation sites known to mediate cell-cell adhesion. To investigate the functional impact of alternative splice variants, we induced an in vitro splice switch using antisense morpholino treatment and then monitored cellular effects using migration and angiogenesis assays in ECFCs from six normal pregnancies. The CADM1 exon 8 skipping converted the normal ECFCs to a preeclampsia-like state characterized by a decreased migration ability (PANOVA = 0.005) and decreased tubule length (PANOVA = 0.02). We propose aberrant splicing of CADM1 and the resulting changes in the adherence properties of ECFCs as a potential contributor to cardiovascular sequelae in the offspring of preeclamptic pregnancies.NEW & NOTEWORTHY We investigated differential splicing between normal and preeclamptic pregnancies in endothelial colony-forming cells (ECFCs) from cord blood. Transcriptome-wide analysis identified exon 8 skipping of CADM1 mRNA to be upregulated in ECFCs from women with preeclampsia. In vitro splice switching studies indicated that induction of this isoform decreases the cell migration and tubule formation abilities of fetal ECFCs. Our findings link a specific splice isoform of CADM1 to preeclampsia, with potential implications for vascular health in the offspring.
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