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Functional Analysis of p21Cip1/ and Its Family Members in Trophoblastic Cells of the Placenta and Its Roles in
Nina-Naomi Kreis1, Alexandra Friemel1, Lukas Jennewein1
1Obstetrics and Prenatal Medicine, Department of Gynecology and Obstetrics, University Hospital Frankfurt, J. W. Goethe-University Frankfurt, Theodor-Stern-Kai 7, 60590 Frankfurt, Germany.
Insights
Preeclampsia involves placental cell cycle regulators like p21. Reduced p21 in early-onset preeclampsia impairs trophoblast fusion, impacting placental development and disease pathogenesis.
Area of Science:
- Cellular and Molecular Biology
- Reproductive Biology
- Pathophysiology
Background:
- Preeclampsia (PE) is a placental disorder linked to cellular process imbalances.
- Cell cycle regulators p21, p27, and p57 are crucial for placental development.
Purpose of the Study:
- Investigate the roles of p21, p27, and p57 in placental development.
- Elucidate their molecular involvement in preeclampsia pathogenesis.
Main Methods:
- Immunohistochemistry of placental tissues from PE patients and controls.
- Real-time quantitative PCR for gene expression analysis.
- Analysis of trophoblast cell lines and organoids under varying conditions.
Main Results:
- Delivery mode significantly impacts placental gene expression (e.g., CDKN1A, CDKN1B).
- Cell cycle regulators are highly expressed in early placentas and affected by hypoxia.
- p21 depletion in trophoblast cells reduces fusion-related gene expression and impairs cell fusion.
Conclusions:
- Cell cycle regulators are vital for placental development.
- Reduced p21 expression in early-onset PE negatively affects trophoblast fusion and contributes to disease pathogenesis.
Abstract:
Preeclampsia (PE), a gestational hypertensive disease originating from the placenta, is characterized by an imbalance of various cellular processes. The cell cycle regulator p21Cip1/ (p21) and its family members p27 and p57 regulate signaling pathways fundamental to placental development. The aim of the present study was to enlighten the individual roles of these cell cycle regulators in placental development and their molecular involvement in the pathogenesis of PE. The expression and localization of p21, phospho-p21 (Thr-145), p27, and p57 was immunohistochemically analyzed in placental tissues from patients with early-onset PE, early-onset PE complicated by the HELLP (hemolysis, elevated liver enzymes and low platelet count) syndrome as well as late-onset PE compared to their corresponding control tissues from well-matched women undergoing caesarean sections. The gene level was evaluated using real-time quantitative PCR. We demonstrate that the delivery mode strongly influenced placental gene expression, especially for CDKN1A (p21) and CDKN1B (p27), which were significantly upregulated in response to labor. Cell cycle regulators were highly expressed in first trimester placentas and impacted by hypoxic conditions. In support of these observations, p21 protein was abundant in trophoblast organoids and hypoxia reduced its gene expression. Microarray analysis of the trophoblastic BeWo cell line depleted of p21 revealed various interesting candidate genes and signaling pathways for the fusion process. The level of p21 was reduced in fusing cytotrophoblasts in early-onset PE placentas and depletion of p21 led to reduced expression of fusion-related genes such as syncytin-2 and human chorionic gonadotropin (β-hCG), which adversely affected the fusion capability of trophoblastic cells. These data highlight that cell cycle regulators are important for the development of the placenta. Interfering with p21 influences multiple pathways related to the pathogenesis of PE.
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