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RITA Is Expressed in Trophoblastic Cells and Is Involved in Differentiation Processes of the Placenta.

Cells (2019-11-27)
Julia Maria Wildner, Alexandra Friemel, Lukas Jennewein, Susanne Roth, Andreas Ritter, Cornelia Schüttler, Qi Chen, Frank Louwen, Juping Yuan, Nina-Naomi Kreis
ABSTRACT

Preeclampsia (PE) remains a leading cause of maternal and perinatal mortality and morbidity worldwide. Its pathogenesis has not been fully elucidated and no causal therapy is currently available. It is of clinical relevance to decipher novel molecular biomarkers. RITA (RBP-J (recombination signal binding protein J)-interacting and tubulin-associated protein) has been identified as a negative modulator of the Notch pathway and as a microtubule-associated protein important for cell migration and invasion. In the present work, we have systematically studied RITA's expression in primary placental tissues from patients with early- and late-onset PE as well as in various trophoblastic cell lines. RITA is expressed in primary placental tissues throughout gestation, especially in proliferative villous cytotrophoblasts, in the terminally differentiated syncytiotrophoblast, and in migrating extravillous trophoblasts. RITA's messenger RNA (mRNA) level is decreased in primary tissue samples from early-onset PE patients. The deficiency of RITA impairs the motility and invasion capacity of trophoblastic cell lines, and compromises the fusion ability of trophoblast-derived choriocarcinoma cells. These data suggest that RITA may play important roles in the development of the placenta and possibly in the pathogenesis of PE.

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Sigma-Aldrich
Anti-β-actina monoclonale, clone AC-15, ascites fluid
Sigma-Aldrich
Anticorpo anti tubulina acetilata, monoclonale, topo, clone 6-11B-1, purified from hybridoma cell culture
Sigma-Aldrich
Anti-HCG β antibody produced in rabbit, affinity isolated antibody