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September 5, 2025Cell14 citationsOpen Access

A split-site E3 ligase mechanism enables ZNFX1 to ubiquitinate and cluster single-stranded RNA into ubiquitin-coated nucleoprotein particles

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DGDaniel B. GrabarczykEAEric J. AirdVRVanessa Reznikow

Key Points

  • ZNFX1's E3 ligase activity clusters RNA into nucleoprotein particles, supporting cellular immune defense.
  • Demonstrated that single-stranded RNA enhances ZNFX1 E3 activity via dimerization, promoting RNA ubiquitination.
  • The joint activity of a helicase and a split E3 module mediates ZNFX1's function against RNA viruses.
  • Ubiquitin-coated RNA particles could represent an ancient immune regulatory mechanism in eukaryotic cells.

Abstract

Eukaryotic cells use a multi-layered immune response to combat intracellular pathogens. The ubiquitin ligase ZNFX1 has emerged as a crucial yet little understood player that regulates the immune response while protecting against RNA viruses. Our study unveils the molecular mechanism of ZNFX1, mediated by the joint activity of a helicase serving as a nucleic acid sensor and a non-conventional E3 module featuring a split active site. We demonstrate that single-stranded RNA stimulates E3 activity by fostering dimerization of ZNFX1 subunits that translocate along nucleic acid tracks. Juxtaposed E3 domains complement each other, leading to the ubiquitination of ZNFX1 itself and engaged RNA molecules, while clustering nucleic acids into dense nucleoprotein particles. We show that the E3 ligase activity of ZNFX1 protects cells during an immune response and propose that ubiquitin-coated particles formed by ZNFX1 represent part of an ancient mechanism to regulate both foreign and host RNA in the cell.

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Cite This Study

Grabarczyk et al. (2025) studied this question.

synapsesocial.com/papers/68bb3a3d2b87ece8dc9550b4https://doi.org/10.1016/j.cell.2025.08.006
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