Scientific article
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Endogenous retroviral elements LTR8B and MER65 rewire PSG9 regulation to control trophoblast syncytialization and pre-eclampsia risk

Published inGenome biology, vol. 27, no. 1, 73
Publication date2026-03-09
First online date2026-03-09
Abstract

Background: Understanding the causes of the exceptional rate of evolution of the mammalian placenta is likely to aid the understanding of placental development and the etiology of the human-specific pregnancy disorder pre-eclampsia (PE). As retroelements are often lineage-specific and known to be co-opted for placental function, here we consider the binding of the transcription factors GATA3 and DLX5 to retroelements. These factors are dysregulated in pre-eclampsia, as are their downstream consequences.

Results: We identify retrovirus-derived LTR8B as a placentally-relevant cis-regulatory element (CRE), not least within the PSG array, a primate-specific genomic region that exhibits high intraspecies variability. LTR8B at PSG9 is particularly influential affecting other PSG family members. Moreover, unique among PSGs, PSG9 produces both secreted and membrane-anchored isoforms. The retroelement MER65-int provides alternative polyA signals that enable the evolution of secreted PSG variants by truncating the ancestral CEACAM protein's transmembrane domain. Functional characterization finds that LTR8B/PSG9 regulates the differentiation of multinucleated trophoblasts (syncytialization) and, like chorionic gonadotropin and syncytin1, determines the identity of syncytiotrophoblasts. Notably, PSG9 is the most upregulated PSG in PE, with levels correlated with GATA3 and DLX5 levels.

Conclusions: Retroelements contribute to the structural and expression evolution of PSG genes, facilitating lineage-specific placental evolution. The LTR8B/PSG9 regulatory network plays a central role in syncytiotrophoblast differentiation. Given the association between DLX5/GATA3 dysregulation and elevated PSG9 levels, along with PSG9's expression in the first trimester, PSG9 shows potential as a predictive biomarker for preeclampsia.

Keywords
  • Enhancer
  • Evolution
  • PolyA
  • Pre-eclampsia
  • Pregnancy Specific Glycoprotein 9 (PSG9)
  • Promoter
  • Retroelement
  • Syncytiotrophoblast differentiation
  • Pre-Eclampsia / genetics
  • Pre-Eclampsia / metabolism
  • Female
  • Humans
  • Pregnancy
  • Trophoblasts / metabolism
  • Trophoblasts / cytology
  • Endogenous Retroviruses / genetics
  • Homeodomain Proteins / metabolism
  • Homeodomain Proteins / genetics
  • GATA3 Transcription Factor / metabolism
  • GATA3 Transcription Factor / genetics
  • Transcription Factors / metabolism
  • Animals
  • Placenta / metabolism
Funding
  • China Scholarship Council [201504910684]
  • Basic and Applied Basic Research Foundation of Guangdong Province [2025A1515012066]
Citation (ISO format)
SINGH, Manvendra et al. Endogenous retroviral elements LTR8B and MER65 rewire PSG9 regulation to control trophoblast syncytialization and pre-eclampsia risk. In: Genome biology, 2026, vol. 27, n° 1, p. 73. doi: 10.1186/s13059-026-03944-z
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Identifiers
Journal ISSN1474-7596
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Creation24/03/2026 16:21:24
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