An Integrated Proteomics and Genomics Approach to Identify Essential Protein Kinases During Human Trophoblast Development
Kumar, R.; Dasgupta, P.; Ray, S.; Paul, S.
Show abstract
In the developing human placenta, three subtypes of trophoblast cells, cytotrophoblasts (CTBs), extravillous trophoblasts (EVTs), and syncytiotrophoblasts (STBs), mediate critical functions essential for a successful pregnancy. CTBs constitute the stem/progenitor compartment and differentiate into STBs and EVTs within the floating and anchoring villi, respectively. STBs establish the maternal-fetal exchange interface and secrets human chorionic gonadotropin (hCG), a hormone vital for the maintenance of early pregnancy. EVTs anchor the maternal endometrium and invade the uterine tissue to remodel maternal cells, supporting implantation and progression of pregnancy. In this study, we used human trophoblast stem cells (hTSCs) as a model system and performed quantitative, label-free liquid chromatography-tandem Mass Spectrometry (LC-MS/MS) to profile proteome and phosphoproteome in TSC stem state (analogous to undifferentiated CTBs) and following their differentiation to STBs and EVTs. Through a multiomics approach, we integrated our proteomics data with global gene expression profiles to correlate cell-type specific gene and protein expression during human trophoblast development. We also identified global phosphoproteome and analyzed kinases that are specifically active in hTSC stem state, as well as in differentiated STBs and EVTs. We experimentally validated specific kinases, such as BUB1B, PAK6, PKYMT1 and TNIK are essential for maintaining the hTSC stem-state. Additionally, atypical protein kinase C isoforms PKC{zeta} is essential for STB development, while PTK2B, SRC, TRIO and LYN are important for EVT development. Our findings highlight key kinases uniquely required for specific stages of trophoblast development during human placentation and suggest that pharmacological inhibition of these kinases could negatively impact the placentation process during pregnancy.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Hippo Signaling Cofactor, WWTR1, at the Crossroads of Human Trophoblast Progenitor Self-Renewal and Differentiation. 97%
- Atypical Protein Kinase C iota (PKC{lambda}/{iota}) Ensures Mammalian Development by Establishing the Maternal-Fetal Exchange Interface 96%
- Induction of human trophoblast stem-like cells from primed pluripotent stem cells 95%
Similar papers in this journal
- Induction of Muscle Regenerative Multipotent Stem Cells from Human Adipocytes by PDGF-AB and 5-Azacytidine. 94%
- Notch signaling blockade links transcriptome heterogeneity in quiescent neural stem cells with their reactivation routes and potential 93%
- SETDB1 modulates the TGFbeta response in Duchenne muscular dystrophy myotubes 92%
Similar papers in this journal
- Comparative analysis of the syncytiotrophoblast in placenta tissue and trophoblast organoids using snRNA sequencing 95%
- Innate immune signaling in trophoblast and decidua organoids defines differential antiviral defenses at the maternal-fetal interface 94%
- Deciphering the Preeclampsia-Specific Immune Microenvironment: The Role of Pro-inflammatory Macrophages 94%
Similar papers in this journal
- Laminin switches terminal differentiation fate of human trophoblast stem cells under chemically defined culture conditions. 96%
- Two distinct trophectoderm lineage stem cells from human pluripotent stem cells 95%
- Neural stemness unifies cell tumorigenicity and pluripotent differentiation potential 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.