Transforming growth factor-β signaling governs the differentiation program of extravillous trophoblasts in the developing human placenta

蜕膜 生物 滋养层 胎盘 胎盘形成 细胞生物学 免疫学 转化生长因子 转化生长因子β 遗传学 怀孕 胎儿
作者
Sandra Haider,Andreas Ian Lackner,Bianca Dietrich,Victoria Kunihs,Peter Haslinger,Gudrun Meinhardt,Theresa Maxian,Leila Saleh,Christian Fiala,Jürgen Pollheimer,Paulina A. Latos,Martin Knöfler
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:119 (28): e2120667119-e2120667119 被引量:110
标识
DOI:10.1073/pnas.2120667119
摘要

Abnormal placentation has been noticed in a variety of pregnancy complications such as miscarriage, early-onset preeclampsia, and fetal growth restriction. Defects in the developmental program of extravillous trophoblasts (EVTs), migrating from placental anchoring villi into the maternal decidua and its vessels, is thought to be an underlying cause. Yet, key regulatory mechanisms controlling commitment and differentiation of the invasive trophoblast lineage remain largely elusive. Herein, comparative gene expression analyses of HLA-G–purified EVTs, isolated from donor-matched placenta, decidua, and trophoblast organoids (TB-ORGs), revealed biological processes and signaling pathways governing EVT development. In particular, bioinformatics analyses and manipulations in different versatile trophoblast cell models unraveled transforming growth factor-β (TGF-β) signaling as a crucial pathway driving differentiation of placental EVTs into decidual EVTs, the latter showing enrichment of a secretory gene signature. Removal of Wingless signaling and subsequent activation of the TGF-β pathway were required for the formation of human leukocyte antigen-G + (HLA-G + ) EVTs in TB-ORGs that resemble in situ EVTs at the level of global gene expression. Accordingly, TGF-β–treated EVTs secreted enzymes, such as DAO and PAPPA2, which were predominantly expressed by decidual EVTs. Their genes were controlled by EVT-specific induction and genomic binding of the TGF-β downstream effector SMAD3. In summary, TGF-β signaling plays a key role in human placental development governing the differentiation program of EVTs.
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