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March 27, 2026Cell Communication and Signaling1 citationsOpen Access

Defective HLA-G1 glycosylation disrupts Siglec-7–mediated NK cell tolerance at the maternal–fetal interface in recurrent pregnancy loss

LZLinyu ZhangYFYing FengYZYuting Zhang

Key Points

  • The study aims to explore how HLA-G1 glycosylation affects natural killer cell tolerance at the maternal-fetal interface in cases of recurrent pregnancy loss.
  • Analyzed transcriptomic data and placental tissues from patients with recurrent pregnancy loss and normal pregnancies.
  • Characterized HLA-G1 sialylation using biochemical enrichment, lectin binding, and flow cytometry.
  • Evaluated HLA-G1 and Siglec-7 interactions through co-immunoprecipitation and site-directed mutagenesis.
  • Assessed the effects on EVT invasion and NK cytotoxicity using functional assays with JAR and NK-92MI cells.
  • Identified Asn110-linked sialylation of HLA-G1 as critical for binding to Siglec-7.
  • Disruption of HLA-G1 sialylation led to increased NK cytotoxicity and cytokine release.
  • Loss of interaction between HLA-G1 and Siglec-7 was observed after neuraminidase treatment or Asn110 mutation, affecting HLA-G1 localization.

Abstract

Recurrent pregnancy loss (RPL) remains largely unexplained in a significant subset of patients, where defective immune regulation at the maternal–fetal interface is suspected. Extravillous trophoblasts (EVT) express HLA-G1, a nonclassical MHC-I molecule crucial for immune tolerance. However, the role of HLA-G1 glycosylation in modulating the decidual natural killer (dNK) cell response remains poorly understood. We analysed transcriptomic data and placental tissues from RPL and normal pregnancy to assess glycosylation-related alterations. Biochemical enrichment, lectin binding, and flow cytometry were used to characterize HLA-G1 sialylation. Co-immunoprecipitation and site-directed mutagenesis were used to evaluate the interaction between HLA-G1 and Siglec-7. Functional assays with JAR and NK-92MI cells were used to assess the impact on EVT invasion and NK cytotoxicity. We identified Asn110-linked sialylation as a critical posttranslational modification of HLA-G1 that enables binding to Siglec-7, an inhibitory receptor highly expressed on dNK cells. This interaction is lost upon neuraminidase treatment or Asn110 mutation, which also impairs HLA-G1 surface localization and promotes lysosomal degradation. Functionally, disruption of HLA-G1 sialylation enhances NK cytotoxicity and cytokine release while reducing EVT invasiveness. Our study defines a novel glycoimmune checkpoint at the maternal–fetal interface, where Asn110-dependent HLA-G1 sialylation restrains NK cell activity via Siglec-7. This mechanism, which is disrupted in RPL, expands the physiological relevance of the Siglec axis from cancer to reproductive tolerance and highlights glycosylation as a potential target for immune modulation in pregnancy complications.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69c61ff615a0a509bde18674https://doi.org/10.1186/s12964-026-02831-1
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