The Fanconi anemia pathway induces chromothripsis and ecDNA-driven cancer drug resistance.

范可尼贫血通路诱导染色体碎裂和 ecDNA 驱动的癌症耐药性

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作者:Engel Justin L, Zhang Xiao, Wu Mingming, Wang Yan, Espejo Valle-Inclán Jose, Hu Qing, Woldehawariat Kidist S, Sanders Mathijs A, Smogorzewska Agata, Chen Jin, Cortés-Ciriano Isidro, Lo Roger S, Ly Peter
Chromothripsis describes the catastrophic shattering of mis-segregated chromosomes trapped within micronuclei. Although micronuclei accumulate DNA double-strand breaks and replication defects throughout interphase, how chromosomes undergo shattering remains unresolved. Using CRISPR-Cas9 screens, we identify a non-canonical role of the Fanconi anemia (FA) pathway as a driver of chromothripsis. Inactivation of the FA pathway suppresses chromosome shattering during mitosis without impacting interphase-associated defects within micronuclei. Mono-ubiquitination of FANCI-FANCD2 by the FA core complex promotes its mitotic engagement with under-replicated micronuclear chromosomes. The structure-selective SLX4-XPF-ERCC1 endonuclease subsequently induces large-scale nucleolytic cleavage of persistent DNA replication intermediates, which stimulates POLD3-dependent mitotic DNA synthesis to prime shattered fragments for reassembly in the ensuing cell cycle. Notably, FA-pathway-induced chromothripsis generates complex genomic rearrangements and extrachromosomal DNA that confer acquired resistance to anti-cancer therapies. Our findings demonstrate how pathological activation of a central DNA repair mechanism paradoxically triggers cancer genome evolution through chromothripsis.

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