Differential expression of PPP1R12A transcripts, including those harbouring alternatively spliced micro-exons, in

Edward Frew1, Rebecca Sainty2, Louise Chappell-Maor2

  • 1Department of Obstetrics and Gynaecology, Norfolk and Norwich University Hospital NHS Foundation Trust, Norwich, UK.

Placenta
|April 14, 2024
PubMed

Insights

Alternative splicing of PPP1R12A transcripts, potentially lacking a functional leucine zipper domain, is linked to placenta-associated pregnancy complications like pre-eclampsia and intrauterine growth restriction.

Area of Science:

  • Reproductive biology
  • Molecular genetics
  • Vascular physiology

Background:

  • Placenta-associated pregnancy complications like pre-eclampsia (PE) and intrauterine growth restriction (IUGR) are linked to endothelial dysfunction and vascular smooth muscle aberrations.
  • Myosin Light Chain Phosphatase (MLCP) regulates vascular smooth muscle contractility, with PPP1R12A being a key component of this complex.

Purpose of the Study:

  • To investigate the role of alternative splicing of PPP1R12A micro-exons in placenta-associated pregnancy complications.
  • To determine if alternative splicing results in isoforms lacking the leucine zipper (LZ) domain, potentially promoting vasoconstriction.

Main Methods:

  • Quantitative reverse transcription PCR (qRT-PCR) was used to determine gene expression.
  • Epigenetic profiling included bisulphite-based DNA methylation analysis and ChIP for histone modifications.

Main Results:

  • Novel transcripts with alternative micro-exon inclusion, potentially producing LZ- lacking PPP1R12A protein, were identified.
  • Differential expression of PPP1R12A isoforms, including the canonical transcript, was observed in placental biopsies from PE and IUGR pregnancies compared to uncomplicated ones.

Conclusions:

  • Upregulation of PPP1R12A in complicated pregnancies may result from enhanced promoter activity and increased transcription due to placental physiological stress.
  • This upregulation appears independent of promoter DNA methylation.
Abstract

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