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Constitutive expression of a small heat‐shock protein confers cellular thermotolerance and thermal protection to the photosynthetic apparatus in cyanobacteria

机译:小热休克蛋白的组成型表达赋予蓝藻光合作用细胞耐热性和热保护作用

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>The role of a small heat-shock protein (Hsp) in the acquisition of thermotolerance in cyanobacteria was investigated. Synechococcus sp. PCC 7942 was transformed with an expression vector carrying the coding sequence of the hspA gene encoding a small heat-shock protein from Synechococcus vulcanus under the control of the tac promoter. The transformant which was shown to constitutively express HspA displayed improved viability compared with the reference strain upon transfer from 30 to 50°C in the light. When the heat shock was given in darkness, the survival rate in the reference strain increased greatly, approaching a level similar to that for the HspA expressing strain after heat shock in the light. Expression of HspA increased thermal resistance of photosystem II (PS II) and protected phycocyanin from heat-induced photobleaching. Our results are indicative of a central role for HspA in amelioration of the harmful effect of light during heat stress and identified the possible sites of action of the small Hsp in vivo to be the PS II complex and the light-harvesting phycobilisomes.
机译:>研究了小热休克蛋白(Hsp)在蓝细菌耐热性获得中的作用。 Synechococcus sp。在 tac < / em>启动子。当在光中从30℃转移到50℃时,与参考菌株相比,显示出组成性表达HspA的转化体显示出提高的生存力。当在黑暗中进行热激时,参考菌株的存活率大大提高,接近与在光下热激后表达HspA的菌株相似的水平。 HspA的表达增加了光系统II(PS II)的耐热性,并保护了藻蓝蛋白免受热诱导的光漂白。我们的结果表明,HspA在改善热应激过程中光的有害作用中起着核心作用,并确定了小Hsp在体内可能是PS II复合物和光捕获藻胆体的可能作用部位。

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