4.7 Article

Urothelial Cancer Associated 1 (UCA1) and miR-193 Are Two Non-coding RNAs Involved in Trophoblast Fusion and Placental Diseases

Journal

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2021.633937

Keywords

trophoblast; placenta; preeclampsia; intra uterine growth restriction; syncytialisation; non-coding RNAs

Funding

  1. European Union's Horizon 2020 Research and Innovation Program under Marie Sklodowska-Curie Actions Innovative Training Network (H2020-MSCA-ITN 2017) [765274]

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Through analyzing the expression of non-coding genes in trophoblast fusion and placental diseases, key roles of miR-193b and UCA1 in cell function and gene expression have been identified. Knocking down UCA1 leads to the dysregulation of important trophoblast physiology genes, while in cells overexpressing STOX1B, the effects of UCA1 down-regulation are alleviated.
A bioinformatics screen for non-coding genes was performed from microarrays analyzing on the one hand trophoblast fusion in the BeWo cell model, and on the other hand, placental diseases (preeclampsia and Intra-Uterine Growth Restriction). Intersecting the deregulated genes allowed to identify two miRNA (mir193b and miR365a) and one long non-coding RNA (UCA1) that are pivotal for trophoblast fusion, and deregulated in placental diseases. We show that miR-193b is a hub for the down-regulation of 135 cell targets mainly involved in cell cycle progression and energy usage/nutrient transport. UCA1 was explored by siRNA knock-down in the BeWo cell model. We show that its down-regulation is associated with the deregulation of important trophoblast physiology genes, involved in differentiation, proliferation, oxidative stress, vacuolization, membrane repair and endocrine production. Overall, UCA1 knockdown leads to an incomplete gene expression profile modification of trophoblast cells when they are induced to fuse into syncytiotrophoblast. Then we performed the same type of analysis in cells overexpressing one of the two major isoforms of the STOX1 transcription factor, STOX1A and STOX1B (associated previously to impaired trophoblast fusion). We could show that when STOX1B is abundant, the effects of UCA1 down-regulation on forskolin response are alleviated.

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