Bhole Deepak, Allikian Michael J, Tower John
Department of Biological Sciences, University of Southern California, Los Angeles 90089 1340, USA.
Mech Ageing Dev. 2004 Sep;125(9):651-63. doi: 10.1016/j.mad.2004.08.010.
Drosophila hsp22 is a member of the small heat shock proteins family (shsps). The hsp22 is expressed in a tissue-general pattern in response to heat stress and during normal aging, and localizes to the mitochondrial matrix, however, its exact function and targets are unknown. Hsp22 was found to be rapidly induced in response to oxidative stress, indicating that hsp22 is also an oxidative stress response gene. To assay for effects of hsp22, a ubiquitous pattern of hsp22 gene expression was generated in young flies using the "tet-on" doxycycline-regulated promoter system. The hsp22 over-expression made flies more sensitive to heat and oxidative stress, while resistance to coumarin poisoning was not affected. Life span was also reduced, particularly at higher culture temperatures. Members of other hsp families have been shown to feedback-inhibit their own expression by interacting with the heat shock transcription factor (HSF) and preventing binding to the HSEs. Induction of hsp22:lacZ and hsp70:lacZ reporter transgenes in response to acute stress was normal in the presence of hsp22 protein over-expression and in old flies, indicating that the negative effects of hsp22 are downstream of the HSF/HSE pathway and the transcriptional heat shock response. The data demonstrate a specific over-expression phenotype for hsp22 and suggest that hsp22 interacts with heat and oxidative stress resistance pathways.
果蝇热休克蛋白22(hsp22)是小热休克蛋白家族(shsps)的成员之一。hsp22在热应激和正常衰老过程中以组织普遍的模式表达,并定位于线粒体基质,然而,其确切功能和作用靶点尚不清楚。研究发现hsp22在氧化应激反应中被快速诱导,这表明hsp22也是一个氧化应激反应基因。为了检测hsp22的作用,利用“四环素诱导(tet-on)”强力霉素调控启动子系统在年轻果蝇中产生了hsp22基因的普遍表达模式。hsp22的过表达使果蝇对热和氧化应激更加敏感,而对香豆素中毒的抗性未受影响。寿命也缩短了,尤其是在较高的培养温度下。其他热休克蛋白家族的成员已被证明通过与热休克转录因子(HSF)相互作用并阻止其与热休克元件(HSEs)结合来反馈抑制自身的表达。在hsp22蛋白过表达的情况下以及在老年果蝇中,急性应激反应下hsp22:lacZ和hsp70:lacZ报告转基因基因诱导正常,这表明hsp22的负面影响发生在HSF/HSE途径和转录热休克反应的下游。这些数据证明了hsp22具有特定的过表达表型,并表明hsp22与热应激和氧化应激抗性途径相互作用。