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Stress resistance conferred by neuronal expression of dominant-negative Rac in adult Drosophila melanogaster.

机译:成年果蝇果蝇中显性阴性Rac的神经元表达赋予其抗逆性。

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摘要

How does brain coordinate physiological and behavioral responses to achieve survival in adverse environment is intriguing yet complicated. During studies of the small G protein Rac's role in learning and memory, the authors unexpectedly observed that neuronal expression of dominant-negative Rac in adult Drosophila remarkably enhanced the survival of animals in various stress conditions, including oxidation, desiccation, starvation, and heat. The elevated stress resistance was not accompanied by a reduction in female fecundity or a change in whole-body lipid storage. The observation therefore implies the involvement of small G protein Rac in neuronal regulation of global stress responses.
机译:在不利的环境中,大脑如何协调生理和行为反应以实现生存,这很有趣,但也很复杂。在研究小G蛋白Rac在学习和记忆中的作用时,作者出乎意料地观察到成年果蝇中Rac显性负性神经元的表达显着提高了动物在各种应激条件下的存活率,包括氧化,干燥,饥饿和高温。增强的抗逆性并没有伴随着雌性繁殖力的降低或全身脂质存储量的变化。因此,该观察结果暗示了小G蛋白Rac参与了整体应激反应的神经元调节。

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