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Two- and Three-Dimensional Live Cell Imaging of DNA Damage Response Proteins
Published on: September 28, 2012
TRAF-interacting protein with forkhead-associated domain (TIFA) transduces DNA damage-induced activation of NF-κB
Jingxuan Fu1, Daoyuan Huang1, Fuwen Yuan1
1Peking University Research Center on Aging, Beijing 100191; Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Peking University Health Science Center, Beijing 100191.
Abstract:
DNA damage-induced NF-κB activation and the secretion of inflammatory cytokines play crucial roles in carcinogenesis and cellular senescence. However, the underlying mechanisms, especially the initial sensors and transducers connecting the nuclear DNA damage signal with cytoplasmic NF-κB activation remain incompletely understood. Here, we report that TRAF-interacting protein with forkhead-associated domain (TIFA), an established NF-κB activator in the cytosol, unexpectedly exhibited nuclear translocation and accumulation on damaged chromatin following genotoxic stress. Accordingly, we also found that DNA damage-induced transcriptional activation and the resulting secretion of classic NF-κB targets, including interleukin (IL)-6 and IL-8, was greatly enhanced in TIFA-overexpressing cells compared with control cells. Mechanistically, DNA damage-induced TIFA phosphorylation at threonine 9 (pThr-9), and this phosphorylation event, involving the pThr-binding forkhead-associated domain, was crucial for its enrichment on damaged chromatin and subsequent NF-κB activation. Moreover, in conjunction with its partner protein, the E3 ligase TNF receptor-associated factor 2 (TRAF2), TIFA relayed the DNA damage signals by stimulating ubiquitination of NF-κB essential modulator (NEMO), whose sumoylation, phosphorylation, and ubiquitination were critical for NF-κB's response to DNA damage. Consistently, TRAF2 knockdown suppressed TIFA overexpression-enhanced NEMO ubiquitination under genotoxic stress, and a unphosphorylatable Thr-9-mutated TIFA variant had only minor effects on NEMO poly-ubiquitination. Finally, in agreement with the model of DNA damage-associated secretory senescence barrier against carcinogenesis, ectopic TIFA expression limited proliferation of multiple myeloma cancer cells. In conclusion our results indicate that TIFA functions as a key transducer in DNA damage-induced NF-κB activation.
Insights
TRAF-interacting protein with forkhead-associated domain (TIFA) unexpectedly moves to damaged DNA, activating NF-κB signaling. This discovery clarifies how cells respond to DNA damage, impacting cancer and senescence.
Area of Science:
- Cellular Biology
- Molecular Biology
- Oncology
Background:
- DNA damage triggers NF-κB activation and inflammatory cytokine secretion, crucial for cancer and senescence.
- The precise mechanisms linking nuclear DNA damage to cytoplasmic NF-κB activation are not fully understood.
Purpose of the Study:
- To elucidate the role of TIFA in DNA damage response pathways.
- To investigate the mechanism by which TIFA connects nuclear DNA damage to NF-κB activation.
Main Methods:
- Utilized genotoxic stress models to observe TIFA behavior.
- Investigated TIFA phosphorylation, nuclear translocation, and interaction with TRAF2 and NEMO.
- Assessed NF-κB activation, cytokine secretion (IL-6, IL-8), and cancer cell proliferation.
Main Results:
- TIFA translocates to damaged chromatin upon genotoxic stress.
- TIFA phosphorylation at Thr-9 is essential for its chromatin binding and NF-κB activation.
- TIFA, with TRAF2, promotes NEMO ubiquitination, enhancing NF-κB response to DNA damage.
- Ectopic TIFA expression inhibits multiple myeloma cell proliferation.
Conclusions:
- TIFA acts as a critical transducer of DNA damage signals, linking nuclear events to cytoplasmic NF-κB activation.
- TIFA's role in DNA damage response has implications for understanding and potentially treating cancer and senescence.
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