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Glucose-regulated protein 78: a new partner of p53 in trophoblast
Serge Arnaudeau1, Patrizia Arboit, Paul Bischof
1Bioimaging Core Facility, University Medical Center, Geneva University, Geneva, Switzerland.
Abstract:
Although wild-type p53 protein is overexpressed in first trimester trophoblast, it is inactive towards its target genes Metalloproteinase 2 and 9. This seems to be due to a complex mechanism of inactivation and stabilization of p53 relying on the formation of protein complexes involving the N-terminus of p53. To detect the proteins associated with this sequence, we incubated biotinylated p53 N-terminal peptide in cytotrophoblastic cell medium 24 h before lysis of cells. We purified the proteins retained on biotinylated peptide using a neutravidin affinity column. Proteins were then identified by peptide mass finger printing followed or not by peptide fragmentation sequencing. Among these proteins, we identified glucose-regulated protein 78 (GRP78) and verified its interaction with p53 in trophoblastic cells by immunoprecipitation and Western blot analysis. Moreover, the decreased expression of GRP78 induced by GRP78siRNA or versipelostatin decreased the formation of high molecular weight p53 complexes and p53 monomer and increased trophoblastic invasion. These results suggest that GRP78 is involved in inactivation and stabilization of p53 and in the regulation of trophoblastic invasion.
Insights
Glucose-regulated protein 78 (GRP78) stabilizes and inactivates wild-type p53 in trophoblast cells. This interaction is crucial for regulating trophoblastic invasion during early pregnancy.
Area of Science:
- Cell Biology
- Molecular Biology
- Reproductive Biology
Background:
- Wild-type p53 protein is overexpressed but inactive in first-trimester trophoblast.
- p53 inactivation involves protein complexes at its N-terminus.
Purpose of the Study:
- To identify proteins interacting with the p53 N-terminus in trophoblastic cells.
- To investigate the role of identified proteins in p53 regulation and trophoblastic invasion.
Main Methods:
- Biotinylated p53 N-terminal peptide pulldown assay.
- Protein identification via mass spectrometry.
- Immunoprecipitation and Western blot for interaction validation.
- siRNA-mediated knockdown of GRP78.
Main Results:
- Glucose-regulated protein 78 (GRP78) was identified as a p53-interacting protein.
- GRP78 interacts with p53 in trophoblastic cells.
- Decreased GRP78 expression reduced p53 complex formation and increased trophoblastic invasion.
Conclusions:
- GRP78 plays a role in the inactivation and stabilization of p53 in trophoblast.
- GRP78 is a regulator of trophoblastic invasion.
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