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December 11, 2025Science10 citations

Chromothripsis and ecDNA initiated by N4BP2 nuclease fragmentation of cytoplasm-exposed chromosomes

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KKKsenia KrupinaAGAlexander GoginashviliMBMichael W. Baughn

Key Points

  • To investigate the role of N4BP2 in promoting chromothripsis and ecDNA in cancer cells.
  • Employed an imaging-based small interfering RNA screen targeting known and putative human nucleases
  • Identified N4BP2 as a cytoplasmic endonuclease involved in DNA damage
  • Analyzed over 10,000 human cancer genomes for N4BP2 expression
  • N4BP2 induced DNA damage leading to chromosome fragmentation and chromothripsis
  • Elevated N4BP2 expression predicted chromothripsis and copy number amplifications
  • N4BP2 promoted tumorigenesis and tumor cell proliferation in high-grade glioma models

Abstract

Genome instability, including chromothripsis, is a hallmark of cancer. Cancer cells frequently contain micronuclei—small, nucleus-like structures formed by chromosome missegregation—that are susceptible to rupture, exposing chromatin to cytoplasmic nucleases. Through an unbiased, imaging-based small interfering RNA screen that targeted all 204 known and putative human nucleases, we identified a previously uncharacterized cytoplasmic endonuclease, NEDD4-binding protein 2 (N4BP2), that enters ruptured micronuclei and initiates DNA damage, leading to chromosome fragmentation. N4BP2 promoted genome rearrangements (including chromothripsis), formation of extrachromosomal DNA (ecDNA) in drug-induced gene amplification, tumorigenesis, and tumor cell proliferation in an induced model of human high-grade glioma. Analysis of more than 10,000 human cancer genomes revealed elevated N4BP2 expression to be predictive of chromothripsis and copy number amplifications, including ecDNA.

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Cite This Study

Krupina et al. (2025) studied this question.

synapsesocial.com/papers/6940192a2d562116f28f6b32https://doi.org/10.1126/science.ado0977
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