Affiliation:
1. BioISI-Instituto de Biosistemas e Ciências Integrativas
2. University of Oviedo
Abstract
Abstract
STAT3 is a pleiotropic transcription factor overactivated in 70% of solid tumours. We have recently reported that inactivating mutations on residues susceptible to post-translational modifications (PTMs) in only one of the monomers (i.e. asymmetric) caused changes in the cellular distribution of STAT3 homodimers. Here, we used more controlled experimental conditions, i.e. without the interference of endogenous STAT3 (STAT3-/- HeLa cells) and in the presence of a defined cytokine stimulus (Leukemia Inhibitory Factor, LIF), to provide further evidence that asymmetric PTMs affect the nuclear translocation of STAT3 homodimers. Time-lapse microscopy for 20 minutes after LIF stimulation showed that S727 dephosphorylation (S727A) and K685 inactivation (K685R) slightly enhanced the nuclear translocation of STAT3 homodimers, while K49 inactivation (K49R) delayed STAT3 nuclear translocation. Our findings suggest that asymmetrically modified STAT3 homodimers could be a new level of STAT3 regulation and, therefore, a potential target for cancer therapy.
Publisher
Research Square Platform LLC
Reference16 articles.
1. Therapeutically exploiting STAT3 activity in cancer — using tissue repair as a road map;Huynh J;Nat. Rev. Cancer,2019
2. M. Diallo, F. Herrera, The role of understudied post-translational modifications for the behavior and function of Signal Transducer and Activator of Transcription 3, FEBS J. (2021) febs.16116. https://doi.org/10.1111/febs.16116
3. M. Vogt, T. Domoszlai, D. Kleshchanok, S. Lehmann, A. Schmitt, V. Poli, W. Richtering, G. Muller-Newen, The role of the N-terminal domain in dimerization and nucleocytoplasmic shuttling of latent STAT3, J.Cell Sci. 124 (2011) 900–909. https://doi.org/jcs.072520 [pii];10.1242/jcs.072520 [doi]
4. STAT3 induction of miR-146b forms a feedback loop to inhibit the NF-κB to IL-6 signaling axis and STAT3-driven cancer phenotypes;Xiang M;Sci. Signal.,2014
5. Microglial Janus kinase/signal transduction and activator of transcription 3 pathway activity directly impacts astrocyte and spinal neuron characteristics;Molet J;J. Neurochem,2016