Dietz T J, Somero G N
Marine Biology Research Division, Scripps Institution of Oceanography, University of California, San Diego, La Jolla 92093-0202.
Proc Natl Acad Sci U S A. 1992 Apr 15;89(8):3389-93. doi: 10.1073/pnas.89.8.3389.
Two extremely eurythermal goby fishes, Gillichthys mirabilis and Gillichthys seta, which encounter habitat temperature variations of approximately 30 degrees C, showed seasonal acclimatization of endogenous levels and of onset temperatures for enhanced synthesis of a 90-kDa-class heat shock protein (HSP90). Summer-acclimatized fishes had higher levels of HSP90 in brain tissue than winter-acclimatized specimens, as shown by Western blot analysis. For winter-acclimatized fishes, increased synthesis of HSP90 was observed when the temperature was raised from a control temperature (18 degrees C) to 28 degrees C. For summer-acclimatized fish, no significantly increased synthesis of HSP90 occurred until the experimental temperature was raised to 32 degrees C. These data suggest that the threshold temperature at which enhanced expression of HSP-encoding genes occurs is not hard-wired genetically but may be subject to acclimatization. A causal relationship between seasonal changes in steady-state levels of HSP90 and the threshold temperature for enhanced HSP90 synthesis is discussed in terms of existing models for the regulation of HSP gene expression.
两种广温性虾虎鱼,奇异吉氏虾虎鱼(Gillichthys mirabilis)和刚毛吉氏虾虎鱼(Gillichthys seta),其栖息地温度变化约为30摄氏度,它们表现出内源性水平以及90-kDa级热休克蛋白(HSP90)增强合成起始温度的季节性适应。如蛋白质免疫印迹分析所示,夏季适应的鱼脑组织中HSP90水平高于冬季适应的样本。对于冬季适应的鱼,当温度从对照温度(18摄氏度)升至28摄氏度时,观察到HSP90合成增加。对于夏季适应的鱼,直到实验温度升至32摄氏度时,HSP90合成才显著增加。这些数据表明,HSP编码基因增强表达发生的阈值温度并非由基因硬性决定,而是可能受到适应的影响。根据现有的HSP基因表达调控模型,讨论了HSP90稳态水平的季节性变化与HSP90合成增强的阈值温度之间的因果关系。