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Published on: June 29, 2013
Cullins in human intra-uterine growth restriction: expressional and epigenetic alterations
G Gascoin-Lachambre1, C Buffat, R Rebourcet
1Département Génétique et Développement, Institut Cochin, INSERM u567, CNRS UMR 8104, Faculté de Médecine Université Paris Descartes, Paris, France.
Insights
Cullin proteins, particularly CUL4B and CUL7, are overexpressed in placentas from pregnancies with intra-uterine growth restriction (IUGR). This suggests Cullins may serve as novel biomarkers for IUGR.
Area of Science:
- Molecular Biology
- Developmental Biology
- Genetics
Background:
- Intra-uterine growth restriction (IUGR) is a significant public health issue impacting neonatal and adult health.
- Cullin proteins are crucial for embryonic development and proteasomal degradation.
- Mutations in Cullin genes are linked to growth retardation syndromes.
Purpose of the Study:
- To investigate the role of Cullin proteins, specifically CUL4B and CUL7, in placental development and IUGR.
- To identify potential molecular markers for IUGR.
Main Methods:
- Analysis of Cullin and cofactor gene expression in normal and IUGR placentas.
- Investigated the role of the SP1 transcription factor in Cullin gene regulation.
- Assessed CUL7 promoter methylation levels in placental tissues.
Main Results:
- Cullin and cofactor gene expression is significantly upregulated in IUGR placentas.
- CUL7 gene expression increases up to 10-fold in IUGR and 15-fold in preeclampsia with IUGR.
- CUL7 promoter hypomethylation observed in IUGR placental tissues.
Conclusions:
- The Cullin protein family, particularly CUL4B and CUL7, are implicated in placental pathologies like IUGR.
- Upregulated Cullin expression and altered CUL7 promoter methylation suggest their involvement in IUGR pathogenesis.
- Cullins represent potential novel biomarkers for diagnosing and understanding IUGR.
Abstract:
Intra-uterine growth restriction (IUGR) is defined by a restriction of fetal growth during gestation. It is a prevalent significant public health problem that jeopardizes neonatal health but also that can have deleterious consequences later in adult life. Cullins constitute a family of seven proteins involved in cell scaffold and in selective proteolysis via the ubiquitin-proteasome system. Most Cullins are critical for early embryonic development and mutations in some Cullin genes have been identified in human syndromes including growth retardation. Our work hypothesis is that Cullins, particularly CUL4B and CUL7, are involved in placental diseases and especially in IUGR. Thus, expression of Cullins and their cofactors was analyzed in normal and pathological placentas. We show that they present a constant significant over-expression in IUGR placentas, whose extent is dependent on the position of the interrogated fragment along the cDNAs, suggesting the existence of different isoforms of the genes. Particularly, the CUL7 gene is up-regulated up to 10 times in IUGR and 15 times in preeclampsia associated with IUGR. The expression of cofactors of Cullins participating to functional complexes has also been evaluated and showed a similar significant increase in IUGR. Promoters of Cullin genes appeared to be under the control of the SP1 transcription factor. Finally, methylation levels of the CUL7 promoter in placental tissues are modulated according to the pathological conditions, with a significant hypomethylation in IUGR. These results concur to pinpoint the Cullin family as a new set of markers of IUGR.
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