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斑马鱼ZF4细胞中热诱导和冷诱导的HSP70表达调控

Heat- and cold-inducible regulation of HSP70 expression in zebrafish ZF4 cells.

作者信息

Airaksinen Susanna, Jokilehto Terhi, Råbergh Christina M I, Nikinmaa Mikko

机构信息

Department of Biology, Laboratory of Animal Physiology, University of Turku, Turku FIN-20014, Finland.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2003 Oct;136(2):275-82. doi: 10.1016/s1096-4959(03)00205-7.

DOI:10.1016/s1096-4959(03)00205-7
PMID:14529753
Abstract

Elevated temperature induces a rapid heat shock transcription factor (HSFs)-mediated expression of heat shock (hsp) genes. The effect of cold exposure on hsp gene expression has hardly been investigated, although ectothermic animals experience both cold and heat stress. We have previously shown in zebrafish that the expression of hsf1a and a unique isoform hsf1b vary in a tissue-specific manner upon heat stress. In the current study, using a zebrafish (Danio rerio) embryonic cell line (ZF4), we have compared the effects of heat shock (28-->37 degrees C) vs. cold shock (28-->20 degrees C) on the expression of ahsf1a, zhsf1b and hsp70. Concomitantly, the suitability of the ZF4 cells as a model system was verified. The expression pattern of HSP70 proteins following heat or cold exposure is distinct, and the total HSP70 level is upregulated or stable, respectively. Moreover, heat exposure specifically increases the ratio of zhsf1a/b expression (10-fold), whereas cold exposure decreases it to one half. These data suggest that the zhsf1a/zhsf1b ratio is regulated in a temperature-dependent manner, and the ratio may be indicative of the stressor-specific HSP70 expression. Furthermore, the response in ZF4 cells upon heat shock resembles the response observed in zebrafish liver and thus, supports the use of this cell line in stress response studies.

摘要

体温升高会诱导热休克转录因子(HSFs)介导的热休克(hsp)基因快速表达。尽管变温动物会经历冷应激和热应激,但冷暴露对hsp基因表达的影响几乎未被研究过。我们之前在斑马鱼中发现,热应激时hsf1a和一种独特的异构体hsf1b的表达会以组织特异性方式发生变化。在本研究中,我们使用斑马鱼(Danio rerio)胚胎细胞系(ZF4),比较了热休克(28℃→37℃)与冷休克(28℃→20℃)对ahsf1a、zhsf1b和hsp70表达的影响。同时,验证了ZF4细胞作为模型系统的适用性。热暴露或冷暴露后HSP70蛋白的表达模式不同,总HSP70水平分别上调或保持稳定。此外,热暴露会特异性增加zhsf1a/b的表达比例(10倍),而冷暴露则将其降低至一半。这些数据表明,zhsf1a/zhsf1b的比例受温度依赖性调节,该比例可能指示应激源特异性的HSP70表达。此外,ZF4细胞在热休克后的反应类似于斑马鱼肝脏中的反应,因此支持将该细胞系用于应激反应研究。

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