Mamon L A, Kutskova Iu A
Genetika. 1993 May;29(5):791-8.
The processes of the recovery of proliferation activity of nervous ganglion cells following heat-shock (37 degrees C, 30 min) were compared in two strains of Drosophila melanogaster (Canton S--the wild-type strain and 1(1)ts403--the mutant with the defect in the heat-shock protein system). The ts-mutant is characterized by the delay n reaching the maximum level in the HSP's synthesis and by more prolonged synthesis of these proteins after heat shock as compared with the wild-type strain. The block in cell proliferation after heat-shock is also more prolonged in the ts mutant's nervous ganglion in comparison with the wild-type strain. These results are n accordance with the hypothesis about the role of HSP's in cell proliferation.
在两种黑腹果蝇品系(野生型品系Canton S和热休克蛋白系统存在缺陷的突变体1(1)ts403)中,比较了热休克(37摄氏度,30分钟)后神经节细胞增殖活性恢复的过程。与野生型品系相比,ts突变体的特点是热休克蛋白合成达到最大水平的时间延迟,且热休克后这些蛋白的合成持续时间更长。与野生型品系相比,ts突变体神经节中热休克后细胞增殖的阻滞也持续更长时间。这些结果与热休克蛋白在细胞增殖中的作用假说相符。