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Autophagy drives epidermal deterioration in a Drosophila model of tissue aging

机译:自噬在果蝇组织衰老模型中驱动表皮退化

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摘要

Organismal lifespan has been the primary readout in aging research. However, how longevity genes control tissue-specific aging remains an open question. To examine the crosstalk between longevity programs and specific tissues during aging, biomarkers of organ-specific aging are urgently needed. Since the earliest signs of aging occur in the skin, we sought to examine skin aging in a genetically tractable model. Here we introduce a Drosophila model of skin aging. The epidermis undergoes a dramatic morphological deterioration with age that includes membrane and nuclear loss. These changes were decelerated in a long-lived mutant and accelerated in a short-lived mutant. An increase in autophagy markers correlated with epidermal aging. Finally, the epidermis of Atg7 mutants retained younger characteristics, suggesting that autophagy is a critical driver of epidermal aging. This is surprising given that autophagy is generally viewed as protective during aging. Since Atg7 mutants are short-lived, the deceleration of epidermal aging in this mutant suggests that in the epidermis healthspan can be uncoupled from longevity. Because the aging readout we introduce here has an early onset and is easily visualized, genetic dissection using our model should identify other novel mechanisms by which lifespan genes feed into tissue-specific aging.
机译:生物寿命是衰老研究的主要内容。然而,寿命基因如何控制组织特异性衰老仍然是一个悬而未决的问题。为了检查衰老过程中长寿程序与特定组织之间的串扰,迫切需要器官特异性衰老的生物标记。由于最早的衰老迹象出现在皮肤中,因此我们试图在遗传上易处理的模型中检查皮肤衰老。在这里,我们介绍果蝇皮肤老化的模型。随着年龄的增长,表皮会发生剧烈的形态退化,包括膜和核丢失。这些变化在长寿命的突变体中减慢,而在短寿命的突变体中加速。自噬标记物的增加与表皮老化有关。最后,Atg7突变体的表皮保留了较年轻的特征,表明自噬是表皮老化的关键驱动因素。鉴于自噬通常被视为在衰老过程中具有保护作用,因此这令人惊讶。由于Atg7突变体的寿命较短,因此该突变体中表皮老化的减速表明,表皮的健康寿命可以与寿命无关。由于我们在此处介绍的衰老读数起步较早并且很容易观察到,因此使用我们的模型进行的遗传解剖应该可以识别其他新机制,从而使寿命基因进入组织特异性衰老。

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