Shilova V Y, Zatsepina O G, Garbuz D G, Funikov S Y, Zelentsova E S, Schostak N G, Kulikov A M, Evgen'ev M B
Engelhardt Institute of Molecular Biology, RAS, Moscow, Russia.
Institute of Cell Biophysics, RAS, Pushchino, Moscow, Russia.
Insect Mol Biol. 2018 Feb;27(1):61-72. doi: 10.1111/imb.12339. Epub 2017 Aug 10.
Heat shock proteins (Hsp70s) from two Diptera species that drastically differ in their heat shock response and longevity were investigated. Drosophila melanogaster is characterized by the absence of Hsp70 and other hsps under normal conditions and the dramatic induction of hsp synthesis after temperature elevation. The other Diptera species examined belongs to the Stratiomyidae family (Stratiomys singularior) and exhibits high levels of inducible Hsp70 under normal conditions coupled with a thermotolerant phenotype and much longer lifespan. To evaluate the impact of hsp70 genes on thermotolerance and longevity, we made use of a D. melanogaster strain that lacks all hsp70 genes. We introduced single copies of either S. singularior or D. melanogaster hsp70 into this strain and monitored the obtained transgenic flies in terms of thermotolerance and longevity. We developed transgenic strains containing the S. singularior hsp70 gene under control of a D. melanogaster hsp70 promoter. Although these adult flies did synthesize the corresponding mRNA after heat shock, they were not superior to the flies containing a single copy of D. melanogaster hsp70 in thermotolerance and longevity. By contrast, Stratiomyidae Hsp70 provided significantly higher thermotolerance at the larval stage in comparison with endogenous Hsp70.
对两种双翅目昆虫的热休克蛋白(Hsp70s)进行了研究,这两种昆虫在热休克反应和寿命方面存在显著差异。黑腹果蝇的特点是在正常条件下不存在Hsp70和其他热休克蛋白,温度升高后热休克蛋白合成会急剧诱导。所研究的另一种双翅目昆虫属于水虻科(奇异水虻),在正常条件下表现出高水平的可诱导Hsp70,具有耐热表型且寿命长得多。为了评估hsp70基因对耐热性和寿命的影响,我们利用了一种缺乏所有hsp70基因的黑腹果蝇品系。我们将奇异水虻或黑腹果蝇的hsp70单拷贝引入该品系,并监测获得的转基因果蝇的耐热性和寿命。我们构建了在黑腹果蝇hsp70启动子控制下含有奇异水虻hsp70基因的转基因品系。尽管这些成年果蝇在热休克后确实合成了相应的mRNA,但它们在耐热性和寿命方面并不优于含有黑腹果蝇hsp70单拷贝的果蝇。相比之下,水虻科的Hsp70在幼虫阶段比内源性Hsp70提供了显著更高的耐热性。