4.3 Article

Accumulation of TERT in mitochondria exerts two opposing effects on apoptosis

期刊

FEBS OPEN BIO
卷 13, 期 9, 页码 1667-1682

出版社

WILEY
DOI: 10.1002/2211-5463.13682

关键词

apoptosis; live-cell imaging; mitochondria; oxidative stress; TERT

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TERT protein plays an important role in cell apoptosis, but its distribution and effects are still controversial. This study using live-cell tracking technology found that TERT accumulation in mitochondria after cellular stress can induce apoptosis, but the accumulation increases over time and eventually leads to cell death. Additionally, gene mutations can also affect the distribution of TERT in mitochondria, thereby impacting apoptosis. Therefore, the role of TERT in cell apoptosis is complex and diverse.
Telomerase reverse transcriptase (TERT) is a protein that catalyzes the reverse transcription of telomere elongation. TERT is also expected to play a non-canonical role beyond telomere lengthening since it localizes not only in the nucleus but also in mitochondria, where telomeres do not exist. Several studies have reported that mitochondrial TERT regulates apoptosis induced by oxidative stress. However, there is still some controversy as to whether mitochondrial TERT promotes or inhibits apoptosis, mainly due to the lack of information on changes in TERT distribution in individual cells over time. Here, we simultaneously detected apoptosis and TERT localization after oxidative stress in individual HeLa cells by live-cell tracking. Single-cell tracking revealed that the stress-induced accumulation of TERT in mitochondria caused apoptosis, but that accumulation increased over time until cell death. The results suggest a new model in which mitochondrial TERT has two opposing effects at different stages of apoptosis: it predetermines apoptosis at the first stage of cell-fate determination, but also delays apoptosis at the second stage. As such, our data support a model that integrates the two opposing hypotheses on mitochondrial TERT's effect on apoptosis. Furthermore, detailed statistical analysis of TERT mutations, which have been predicted to inhibit TERT transport to mitochondria, revealed that these mutations suppress apoptosis independent of mitochondrial localization of TERT. Together, these results imply that the non-canonical functions of TERT affect a wide range of mitochondria-dependent and mitochondria-independent apoptosis pathways.

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