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Fluorescent Calcium Imaging and Subsequent In Situ Hybridization for Neuronal Precursor Characterization in Xenopus laevis
Published on: February 18, 2020
Calcium-dependent regulation of NEMO nuclear export in response to genotoxic stimuli
Craig M Berchtold1, Zhao-Hui Wu, Tony T Huang
1Department of Pharmacology, 301 SMI, 1300 University Avenue, University of Wisconsin, Madison, WI 53706, USA.
Abstract:
The mechanisms involved in activation of the transcription factor NF-kappaB by genotoxic agents are not well understood. Previously, we provided evidence that a regulatory subunit of the IkappaB kinase (IKK) complex, NF-kappaB essential modulator (NEMO)/IKKgamma, is a component of a nuclear signal that is generated after DNA damage to mediate NF-kappaB activation. Here, we found that etoposide (VP16) and camptothecin induced increases in intracellular free calcium levels at 60 min after stimulation of CEM T leukemic cells. Inhibition of calcium increases by calcium chelators, BAPTA-AM and EGTA-AM, abrogated NF-kappaB activation by these agents in several cell types examined. Conversely, thapsigargin and ionomycin attenuated the BAPTA-AM effects and promoted NF-kappaB activation by the genotoxic stimuli. Analyses of nuclear NEMO levels in VP16-treated cells suggested that calcium was required for nuclear export of NEMO. Inhibition of the nuclear exporter CRM1 by leptomycin B did not interfere with NEMO nuclear export. Similarly, deficiency of a plausible calcium-dependent nuclear export receptor, calreticulin, failed to prevent NF-kappaB activation by VP16. However, temperature inactivation of the Ran guanine nucleotide exchange factor RCC1 in the tsBN2 cell line harboring a temperature-sensitive mutant of RCC1 blocked NF-kappaB activation induced by genotoxic stimuli. Overexpression of Ran in this cell model showed that DNA damage stimuli induced formation of a complex between Ran and NEMO, suggesting that RCC1 regulated NF-kappaB activation through the modulation of RanGTP. Indeed, evidence for VP16-inducible interaction between Ran-GTP and NEMO could be obtained by means of glutathione S-transferase (GST) pull-down assays using GST fused to the Ran binding domain of RanBP2, which specifically interacts with the GTP-bound form of Ran. BAPTA-AM did not alter these interactions, suggesting that calcium is a necessary step beyond the formation of a Ran-GTP-NEMO complex in the nucleus. These results suggest that calcium has a unique role in genotoxic stress-induced NF-kappaB signaling by regulating nuclear export of NEMO subsequent to the formation of a nuclear export complex composed of Ran-GTP, NEMO, and presumably, an undefined nuclear export receptor.
Insights
Genotoxic agents activate NF-kappaB signaling through calcium-dependent nuclear export of NEMO, a key component of the IKK complex. This process involves Ran GTPase and occurs after the formation of a nuclear Ran-GTP-NEMO complex.
Area of Science:
- Cellular Biology
- Molecular Biology
- Immunology
Background:
- The transcription factor NF-kappaB plays a crucial role in immune responses and cellular stress.
- Activation of NF-kappaB by genotoxic agents is not fully understood.
- The NF-kappaB essential modulator (NEMO)/IKKgamma subunit is implicated in NF-kappaB activation following DNA damage.
Purpose of the Study:
- To elucidate the mechanisms of NF-kappaB activation by genotoxic agents.
- To investigate the role of intracellular calcium and NEMO nuclear export in this process.
- To identify the molecular players involved in the nuclear signaling pathway.
Main Methods:
- Stimulation of CEM T leukemic cells with genotoxic agents (etoposide, camptothecin).
- Measurement of intracellular calcium levels using calcium chelators (BAPTA-AM, EGTA-AM).
- Analysis of nuclear NEMO levels and protein interactions using techniques like GST pull-down assays.
- Utilizing a temperature-sensitive mutant cell line (tsBN2) for studying the role of RCC1 and Ran GTPase.
Main Results:
- Genotoxic agents induced intracellular calcium increases, which were essential for NF-kappaB activation.
- Calcium chelation abrogated NF-kappaB activation, while calcium-releasing agents promoted it.
- Calcium was required for the nuclear export of NEMO, occurring after the formation of a Ran-GTP-NEMO complex.
- RCC1 regulates NF-kappaB activation by modulating RanGTP, which forms a complex with NEMO in the nucleus.
Conclusions:
- Intracellular calcium plays a critical role in genotoxic stress-induced NF-kappaB signaling.
- Calcium mediates the nuclear export of NEMO, a step subsequent to Ran-GTP-NEMO complex formation.
- The findings reveal a novel calcium-dependent pathway regulating NF-kappaB activation following DNA damage.
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