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Overexpression of CBS and CSE genes affects lifespan stress resistance and locomotor activity in Drosophila melanogaster

机译:CBS和CSE基因的过表达影响果蝇的寿命抗逆性和运动能力

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摘要

Recent experimental studies highlighted the role of hydrogen sulfide (H2S) in aging and longevity. The cystathionine ß-synthase (CBS) and cystathionine γ-lyase (CSE) are the key enzymes responsible for H2S production. Here we investigated the geroprotective effects of CSE and CBS overexpression in Drosophila. Overexpression of CSE did not affect a lifespan and decrease (mitochondrial form of CSE) or increase (cytoplasmic form of CSE) age dynamics of locomotor activity, while overexpression of CBS increase median (by 12.5%) and maximum (by 6.9%) lifespan and locomotor activity. Increasing of both CSE and CBS expression levels resulted in thermotolerance, but the resistance to combination of arid and food-free conditions decreased. The resistance to oxidative stress (paraquat) was not affected in flies with overexpression of CBS and cytoplasmic CSE, but decreased in flies overexpressing mitochondrial form of CSE. Thus, transgene overexpression of the CSE and CBS in Drosophila induce similar effects on stress-resistance and locomotor activity, however lifespan extending effect was revealed for CBS overexpression only.
机译:最近的实验研究强调了硫化氢(H2S)在老化和寿命中的作用。胱硫醚β-合酶(CBS)和胱硫醚γ-裂合酶(CSE)是负责产生H2S的关键酶。在这里,我们调查了果蝇中CSE和CBS过表达的保护作用。 CSE的过表达不会影响寿命,并降低运动活性的年龄动态(CSE的线粒体形式)或增加(CSE的胞质形式),而CBS的过表达会延长中位寿命(增加12.5%)和最大寿命(增加6.9%),运动活动。 CSE和CBS表达水平的增加都会导致耐热性,但对干旱和无食物条件的耐受性下降。 CBS和细胞质CSE过表达的果蝇对氧化应激(百草枯)的抗性不受影响,而CSE的线粒体过表达的果蝇则降低了对氧化应激(百草枯)的抵抗力。因此,果蝇中CSE和CBS的转基因过表达诱导了对抗逆性和运动活动的类似作用,但是仅CBS过表达揭示了寿命延长作用。

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