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Allavena, G.

Publications and source records attributed to Allavena, G..

2 recordsLinked to original sources

Telomeric antisense oligonucleotides reduce premature aging phenotypes in telomerase mutant zebrafish

Telomerase activity is restricted in somatic cells, resulting in progressive telomere shortening. Telomere erosion eventually activates the DNA damage response (DDR), inducing cell-cycle arrest and cellular senescence or apoptosis. We previously reported that telomere dysfunction induces the transcription of telomeric non-coding RNAs (tncRNAs) which are critical mediators of DDR activation. Blocking tncRNAs with telomeric antisense oligonucleotides (tASOs) suppresses in vivo DDR signaling and its downstream effects. Here, we show that tASO-mediated inhibition of telomeric DDR in second-generation tert-/- zebrafish embryos with critically short telomeres leads to improved developmental outcomes and rescues premature aging phenotypes, including enhanced survival. Notably, a single tASO treatment administered at the one-cell stage of first-generation tert-/- embryos leads to enhanced fertility observed in 6-month-old adults. Overall, these findings demonstrate that tASO-based inhibition of telomeric DDR is sufficient to effectively rescue premature aging phenotypes in zebrafish.

pathology↗

cGAS-STING is responsible for aging of telomerase deficient zebrafish.

Telomere shortening occurs in multiple tissues throughout aging. When telomeres become critically short, they trigger DNA damage responses and p53 stabilization, leading to apoptosis or replicative senescence. In vitro, cells with short telomeres activate the cGAS-STING innate immune pathway resulting in type I interferon inflammation and senescence. However, the consequences of these events to the organism are not yet understood. Here, we show that sting is responsible for premature aging of telomerase-deficient zebrafish. We generated sting-/- tert-/- double mutants and observed a thorough rescue of tert-/- phenotypes. At the cellular level, lack of cGAS-STING in ter t mutants resulted in reduced senescence, increased cell proliferation, and low inflammation despite similar short telomeres. Critically, absence of sting function resulted in dampening of the DNA damage response and low p53 levels. At the organism level, sting-/- tert-/- zebrafish regained fertility, delayed cachexia, and cancer incidence, resulting in increased healthspan and lifespan of telomerase mutants.

cell biology↗