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PMID: 40749324 Published · ppublish English

Cytosolic DNA and intracellular Ca2+: Maintaining genome stability during replication stress.

DNA repair ·Vol. 152 ·2025-08-00

Li S, Lu HT, You Z

Abstract

Maintaining genome stability during DNA replication is a critical cellular challenge. Various surveillance and repair mechanisms have evolved to cope with replication stress, which can be caused by environmental insults, metabolic byproducts, complex DNA structures in the genome, and replication-transcription conflicts. This perspective highlights a newly identified cytosolic DNA/Ca2+-dependent signaling pathway that plays a crucial role in protecting stalled replication forks. The pathway involves cytosolic DNA generation and its sensing by the cGAS-cGAMP-STING axis, TRPV2-mediated Ca2+ release from the ER, and activation of a CaMKK2-AMPK protein phosphorylation cascade that suppresses the EXO1 nuclease, thereby preventing aberrant fork processing and preserving chromosomal integrity. Separate from the ATR/Chk1 checkpoint, this cytoDNA/Ca2+-dependent pathway represents a non-redundant mechanism for genome maintenance, with potentially important implications for cancer formation and its treatment. Moreover, the intersection of this pathway with other signaling networks also enables coordinated regulation of genome maintenance, immune response, autophagy, and cellular senescence.

Keywords
AMPK CaMKK2 Cytosolic DNA EXO1 Fork protection Intracellular Ca(2+) Replication stress TRPV2 cGAS/STING
Article Info
Journal
DNA repair
Abbr.
DNA Repair (Amst)
ISSN
1568-7856
Corresponding email
Published
2025-08-00
Language
English
Country/Region
Netherlands
NLM ID
101139138
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