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Updated: Jun 28, 2025

Visualizing and Quantifying Endonuclease-Based Site-Specific DNA Damage
Published on: August 21, 2021
When DNA-damage responses meet innate and adaptive immunity
Jie Tong1,2, Jiangwei Song3, Wuchao Zhang4
1College of Life Science, Hebei University, Baoding, 071002, China.
Abstract:
When cells proliferate, stress on DNA replication or exposure to endogenous or external insults frequently results in DNA damage. DNA-Damage Response (DDR) networks are complex signaling pathways used by multicellular organisms to prevent DNA damage. Depending on the type of broken DNA, the various pathways, Base-Excision Repair (BER), Nucleotide Excision Repair (NER), Mismatch Repair (MMR), Homologous Recombination (HR), Non-Homologous End-Joining (NHEJ), Interstrand Crosslink (ICL) repair, and other direct repair pathways, can be activated separately or in combination to repair DNA damage. To preserve homeostasis, innate and adaptive immune responses are effective defenses against endogenous mutation or invasion by external pathogens. It is interesting to note that new research keeps showing how closely DDR components and the immune system are related. DDR and immunological response are linked by immune effectors such as the cyclic GMP-AMP synthase (cGAS)-Stimulator of Interferon Genes (STING) pathway. These effectors act as sensors of DNA damage-caused immune response. Furthermore, DDR components themselves function in immune responses to trigger the generation of inflammatory cytokines in a cascade or even trigger programmed cell death. Defective DDR components are known to disrupt genomic stability and compromise immunological responses, aggravating immune imbalance and leading to serious diseases such as cancer and autoimmune disorders. This study examines the most recent developments in the interaction between DDR elements and immunological responses. The DDR network's immune modulators' dual roles may offer new perspectives on treating infectious disorders linked to DNA damage, including cancer, and on the development of target immunotherapy.
Insights
The DNA-Damage Response (DDR) network and the immune system are intricately linked. Understanding their interaction offers new therapeutic strategies for DNA damage-related diseases like cancer and autoimmune disorders.
Area of Science:
- Molecular Biology
- Immunology
- Genetics
Background:
- Cellular proliferation and various insults can cause DNA damage, necessitating complex DNA-Damage Response (DDR) networks in multicellular organisms.
- Multiple repair pathways, including Base-Excision Repair (BER), Nucleotide Excision Repair (NER), and Homologous Recombination (HR), exist to address different types of DNA damage.
- Both innate and adaptive immune responses are crucial for maintaining homeostasis against mutations and pathogens.
Purpose of the Study:
- To review recent advancements in the interplay between DDR components and immunological responses.
- To highlight the dual roles of DDR network's immune modulators.
- To explore potential therapeutic applications stemming from this interaction.
Main Methods:
- Literature review of recent scientific developments.
- Analysis of signaling pathways connecting DDR and immune responses, such as the cGAS-STING pathway.
- Examination of the functional roles of DDR components in immune modulation.
Main Results:
- New research reveals a close relationship between DDR components and the immune system.
- Immune effectors like the cyclic GMP-AMP synthase (cGAS)-Stimulator of Interferon Genes (STING) pathway link DDR and immune responses.
- DDR components can act as sensors for DNA damage-induced immune responses and modulate inflammatory cytokine generation or programmed cell death.
Conclusions:
- Defects in DDR compromise genomic stability and immune function, potentially leading to cancer and autoimmune diseases.
- The dual functions of DDR network's immune modulators provide novel insights.
- This understanding may pave the way for new treatments for DNA damage-related infectious diseases and cancer, including targeted immunotherapies.
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