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March 7, 2026Nature Communications2 citationsOpen Access

TCL1A mediates DNA methylation defects in recurrent hydatidiform mole with NLRP7 pathogenic variants

ZGZheng GaoLZLi ZhangLLLei Li

Key Points

  • This research aims to unveil the mechanism by which NLRP7 variants contribute to DNA methylation defects in recurrent hydatidiform mole.
  • Identified TCL1A as an NLRP7-interacting partner through structural analysis.
  • Conducted cryo-EM to reveal the architecture of the NLRP7-TCL1A complex.
  • Analyzed the impact of NLRP7 variants on TCL1A interaction and localization.
  • Combined in silico predictions with interaction analysis to identify pathogenic variants.
  • Majority of NLRP7 variants impair interaction with TCL1A.
  • NLRP7 is proposed to sequester TCL1A in the cytoplasm to prevent its nuclear entry.
  • Mislocalized TCL1A in the nucleus inhibits DNMT3A and disrupts DNA methylation.

Abstract

Pathogenic variants in NLRP7, implicated in 55% of recurrent hydatidiform mole characterized by hypomethylation at maternally methylated imprinted regions, are proposed to disrupt de novo DNA methylation in human oocytes. However, the precise mechanism remains unclear. Here, we identify TCL1A, a DNMT3A inhibitor, as an endogenous NLRP7-interacting partner. The cryo-EM structure of the NLRP7-TCL1A complex reveals its fundamental architecture. Comprehensive analysis demonstrates that the majority of recurrent hydatidiform mole-causing NLRP7 variants impair its interaction with TCL1A. Mechanistically, NLRP7 potentially safeguards oocyte methylome by sequestering TCL1A in the cytoplasm, thereby preventing its nuclear entry and subsequent suppression of DNMT3A-mediated de novo methylation. Combining in silico predictions and interaction analysis, we identify L766R as a pathogenic variant. These findings propose a cytoplasmic regulatory mechanism governing nuclear DNA methylation, explaining the hypomethylation pathogenesis in NLRP7 variant-associated recurrent hydatidiform mole. NLRP7 mutations cause recurrent hydatidiform mole with maternal imprinting defects. Here, the authors show that these mutations disrupt the interaction between NLRP7 and TCL1A, causing TCL1A to mislocalize to the nucleus and inhibit the activity of methyltransferase DNMT3A.

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Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/69abc1f65af8044f7a4eb1ddhttps://doi.org/10.1038/s41467-026-69744-y
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