4.8 Article

The telomeric protein TERF2/TRF2 impairs HMGB1-driven autophagy

Journal

AUTOPHAGY
Volume 19, Issue 5, Pages 1479-1490

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/15548627.2022.2138687

Keywords

Autophagy; cancer; cell biology; HMGB1; oxidative stress; ROS; TERF2; TRF2

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TERF2 is a telomeric protein that plays a crucial role in tumor formation and progression. This study uncovers a novel function of TERF2 in regulating the autophagic process and reveals its interaction with HMGB1 as functional for protein localization.
TERF2/TRF2 is a pleiotropic telomeric protein that plays a crucial role in tumor formation and progression through several telomere-dependent and -independent mechanisms. Here, we uncovered a novel function for this protein in regulating the macroautophagic/autophagic process upon different stimuli. By using both biochemical and cell biology approaches, we found that TERF2 binds to the non-histone chromatin-associated protein HMGB1, and this interaction is functional to the nuclear/cytoplasmic protein localization. Specifically, silencing of TERF2 alters the redox status of the cells, further exacerbated upon EBSS nutrient starvation, promoting the cytosolic translocation and the autophagic activity of HMGB1. Conversely, overexpression of wild-type TERF2, but not the mutant unable to bind HMGB1, negatively affects the cytosolic translocation of HMGB1, counteracting the stimulatory effect of EBSS starvation. Moreover, genetic depletion of HMGB1 or treatment with inflachromene, a specific inhibitor of its cytosolic translocation, completely abolished the pro-autophagic activity of TERF2 silencing. In conclusion, our data highlighted a novel mechanism through which TERF2 modulates the autophagic process, thus demonstrating the key role of the telomeric protein in regulating a process that is fundamental, under both physiological and pathological conditions, in defining the fate of the cells.

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