Zarubin Mikhail, Azorskaya Talyana, Kuldoshina Olga, Alekseev Sergey, Mitrofanov Semen, Kravchenko Elena
Dzhelepov Laboratory of Nuclear Problems, International Intergovernmental Organization Joint Institute for Nuclear Research, Dubna 141980, Russia.
Flerov Laboratory of Nuclear Reactions, International Intergovernmental Organization Joint Institute for Nuclear Research, Dubna 141980, Russia.
iScience. 2023 May 29;26(7):106998. doi: 10.1016/j.isci.2023.106998. eCollection 2023 Jul 21.
The tardigrade-unique damage suppressor protein (Dsup) can protect DNA from ionizing radiation and reactive oxygen species (ROS). In this study, we generated -expressing lines of and demonstrated that Dsup increased the survival rate after γ-ray irradiation and hydrogen peroxide treatment in flies too, but reduced the level of their locomotor activity. The transcriptome analyses of -expressing lines revealed a significant number of DEGs, >99% of which were down-regulated. Moreover, Dsup could bind RNA. These findings suggest that Dsup can act not only as a DNA protector but also as a non-specific transcriptional repressor and RNA-binding protein, that may lead to disturbance of a number of biological processes in . The obtained data demonstrate features of the Dsup protein action in non-tardigrade organisms and can be used to understand the impact of other unspecific DNA/RNA-binding proteins on ROS and radiation resistance, gene expression, and epigenetic processes.
缓步动物特有的损伤抑制蛋白(Dsup)可以保护DNA免受电离辐射和活性氧(ROS)的损伤。在本研究中,我们构建了表达Dsup的果蝇品系,并证明Dsup在果蝇中也能提高γ射线照射和过氧化氢处理后的存活率,但会降低其运动活性水平。对表达Dsup的果蝇品系进行转录组分析发现了大量差异表达基因(DEG),其中>99%为下调基因。此外,Dsup可以结合RNA。这些发现表明,Dsup不仅可以作为DNA保护剂,还可以作为非特异性转录抑制因子和RNA结合蛋白,这可能会导致果蝇体内许多生物学过程受到干扰。所获得的数据展示了Dsup蛋白在非缓步动物生物体中的作用特点,可用于理解其他非特异性DNA/RNA结合蛋白对ROS和辐射抗性、基因表达及表观遗传过程的影响。