Molekulare Biotechnologie und Systembiologie, TU Kaiserslautern, Paul-Ehrlich-Str. 23, D-67663 Kaiserslautern, Germany.
Mol Plant. 2013 Nov;6(6):1795-813. doi: 10.1093/mp/sst086. Epub 2013 May 27.
To study how conserved fundamental concepts of the heat stress response (HSR) are in photosynthetic eukaryotes, we applied pharmaceutical and antisense/amiRNA approaches to the unicellular green alga Chlamydomonas reinhardtii. The Chlamydomonas HSR appears to be triggered by the accumulation of unfolded proteins, as it was induced at ambient temperatures by feeding cells with the arginine analog canavanine. The protein kinase inhibitor staurosporine strongly retarded the HSR, demonstrating the importance of phosphorylation during activation of the HSR also in Chlamydomonas. While the removal of extracellular calcium by the application of EGTA and BAPTA inhibited the HSR in moss and higher plants, only the addition of BAPTA, but not of EGTA, retarded the HSR and impaired thermotolerance in Chlamydomonas. The addition of cycloheximide, an inhibitor of cytosolic protein synthesis, abolished the attenuation of the HSR, indicating that protein synthesis is necessary to restore proteostasis. HSP90 inhibitors induced a stress response when added at ambient conditions and retarded attenuation of the HSR at elevated temperatures. In addition, we detected a direct physical interaction between cytosolic HSP90A/HSP70A and heat shock factor 1, but surprisingly this interaction persisted after the onset of stress. Finally, the expression of antisense constructs targeting chloroplast HSP70B resulted in a delay of the cell's entire HSR, thus suggesting the existence of a retrograde stress signaling cascade that is desensitized in HSP70B-antisense strains.
为了研究光合作用真核生物中热应激反应(HSR)的基本概念的保守程度,我们采用药物和反义/amiRNA 方法对单细胞绿藻衣藻(Chlamydomonas reinhardtii)进行了研究。衣藻的 HSR 似乎是由未折叠蛋白的积累触发的,因为用精氨酸类似物-canavanine 喂养细胞可以在环境温度下诱导 HSR。蛋白激酶抑制剂 staurosporine 强烈抑制 HSR,表明在衣藻中,磷酸化在 HSR 的激活过程中也很重要。虽然用 EGTA 和 BAPTA 去除细胞外钙会抑制苔藓和高等植物的 HSR,但只有 BAPTA 的添加,而不是 EGTA 的添加,会延迟 HSR 并损害衣藻的耐热性。细胞溶质蛋白合成抑制剂环己亚胺的添加会消除 HSR 的衰减,表明蛋白质合成对于恢复蛋白质平衡是必要的。HSP90 抑制剂在环境条件下添加时会引起应激反应,并在高温下延迟 HSR 的衰减。此外,我们还检测到细胞溶质 HSP90A/HSP70A 与热休克因子 1 之间的直接物理相互作用,但令人惊讶的是,这种相互作用在应激开始后仍然存在。最后,靶向叶绿体 HSP70B 的反义构建体的表达导致细胞的整个 HSR 延迟,因此表明存在一个逆行应激信号级联,该级联在 HSP70B-反义菌株中脱敏。