Sun J, Tower J
Department of Biological Sciences, University of Southern California, Los Angeles, California 90089-1340, USA.
Mol Cell Biol. 1999 Jan;19(1):216-28. doi: 10.1128/MCB.19.1.216.
Yeast FLP recombinase was used in a binary transgenic system ("FLP-OUT") to allow induced overexpression of catalase and/or Cu/Zn-superoxide dismutase (Cu/ZnSOD) in adult Drosophila melanogaster. Expression of FLP recombinase was driven by the heat-inducible hsp70 promoter. Once expressed, FLP catalyzed the rearrangement and activation of a target construct in which expression of catalase or Cu/ZnSOD cDNAs was driven by the constitutive actin5C promoter. In this way a brief heat pulse (120 or 180 min, total) of young adult flies activated transgene expression for the rest of the life span. FLP-OUT allows the effects of induced transgene expression to be analyzed in control (no heat pulse) and experimental (heat pulse) populations with identical genetic backgrounds. Under the conditions used, the heat pulse itself always had neutral or slightly negative effects on the life span. Catalase overexpression significantly increased resistance to hydrogen peroxide but had neutral or slightly negative effects on the mean life span. Cu/ZnSOD overexpression extended the mean life span up to 48%. Simultaneous overexpression of catalase with Cu/ZnSOD had no added benefit, presumably due to a preexisting excess of catalase. The data suggest that oxidative damage is one rate-limiting factor for the life span of adult Drosophila. Finally, experimental manipulation of the genetic background demonstrated that the life span is affected by epistatic interactions between the transgene and allele(s) at other loci.
酵母FLP重组酶被用于二元转基因系统(“FLP-OUT”),以实现过氧化氢酶和/或铜/锌超氧化物歧化酶(Cu/ZnSOD)在成年黑腹果蝇中的诱导过表达。FLP重组酶的表达由热诱导型hsp70启动子驱动。一旦表达,FLP催化一个靶构建体的重排和激活,其中过氧化氢酶或Cu/ZnSOD cDNA的表达由组成型肌动蛋白5C启动子驱动。通过这种方式,对年轻成年果蝇进行短暂的热脉冲(总共120或180分钟)可激活转基因在其剩余寿命中的表达。FLP-OUT使得能够在具有相同遗传背景的对照(无热脉冲)和实验(热脉冲)群体中分析诱导转基因表达的效果。在所使用的条件下,热脉冲本身对寿命总是具有中性或轻微的负面影响。过氧化氢酶过表达显著增加了对过氧化氢的抗性,但对平均寿命具有中性或轻微的负面影响。Cu/ZnSOD过表达使平均寿命延长了高达48%。过氧化氢酶与Cu/ZnSOD同时过表达没有额外的益处,推测是由于预先存在过量的过氧化氢酶。数据表明氧化损伤是成年果蝇寿命的一个限速因素。最后,对遗传背景的实验操作表明,寿命受到转基因与其他位点的等位基因之间上位性相互作用的影响。