Eriksson M J, Clarke A K
Department of Plant Physiology, University of Umeå, Sweden.
Cell Stress Chaperones. 2000 Jul;5(3):255-64. doi: 10.1379/1466-1268(2000)005<0255:techsp>2.0.co;2.
In both prokaryotes and eukaryotes, the heat shock protein ClpB functions as a molecular chaperone and plays a key role in resisting high temperature stress. ClpB is important for the development of thermotolerance in yeast and cyanobacteria but apparently not in Escherichia coli. We undertook a complementation study to investigate whether the ClpB protein from E coli (EcClpB) differs functionally from its cyanobacterial counterpart in the unicellular cyanobacterium Synechococcus sp. PCC 7942. The EcClpB protein is 56% identical to its ClpB1 homologue in Synechococcus. A plasmid construct was prepared containing the entire E coli clpB gene under the control of the Synechococcus clpB1 promoter. This construct was transformed into a Synechococcus clpB1 deletion strain (deltaclpB1) and integrated into a phenotypically neutral site of the chromosome. The full-length EcClpB protein (EcClpB-93) was induced in the transformed Synechococcus strain during heat shock as well as the smaller protein (EcClpB-79) that arises from a second translational start inside the single clpB message. Using cell survival measurements we show that the EcClpB protein can complement the Synechococcus deltaclpB1 mutant and restore its ability to develop thermotolerance. We also demonstrate that both EcClpB-93 and -79 appear to contribute to the degree of acquired thermotolerance restored to the Synechococcus complementation strains.
在原核生物和真核生物中,热休克蛋白ClpB作为分子伴侣发挥作用,并在抵抗高温胁迫中起关键作用。ClpB对酵母和蓝细菌耐热性的发展很重要,但对大肠杆菌显然不重要。我们进行了一项互补研究,以调查大肠杆菌的ClpB蛋白(EcClpB)在单细胞蓝细菌聚球藻属PCC 7942中与其蓝细菌对应物在功能上是否存在差异。EcClpB蛋白与其在聚球藻中的ClpB1同源物有56%的同一性。制备了一种质粒构建体,其中包含在聚球藻clpB1启动子控制下的完整大肠杆菌clpB基因。该构建体被转化到聚球藻clpB1缺失菌株(deltaclpB1)中,并整合到染色体的表型中性位点。在热休克期间,全长EcClpB蛋白(EcClpB - 93)以及由单个clpB信息内的第二个翻译起始产生的较小蛋白(EcClpB - 79)在转化的聚球藻菌株中被诱导。通过细胞存活测量,我们表明EcClpB蛋白可以互补聚球藻deltaclpB1突变体并恢复其发展耐热性的能力。我们还证明,EcClpB - 93和 - 79似乎都对恢复到聚球藻互补菌株的获得性耐热程度有贡献。