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PsbU a Protein Associated with Photosystem II Is Required for the Acquisition of Cellular Thermotolerance in Synechococcus species PCC 7002

机译:PsbU一种与光系统II相关的蛋白质 是必须的 用于获取蜂窝 耐热性 球菌种PCC 7002

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摘要

PsbU is an extrinsic protein of the photosystem II complex of cyanobacteria and red algae. Our previous in vitro studies (Y. Nishiyama, D.A. Los, H. Hayashi, N. Murata [1997] Plant Physiol 115: 1473–1480) revealed that PsbU stabilizes the oxygen-evolving machinery of the photosystem II complex against heat-induced inactivation in the cyanobacterium Synechococcus sp. PCC 7002. To elucidate the role of PsbU in vivo, we inactivated the psbU gene in Synechococcus sp. PCC 7002 by targeted mutagenesis. Inactivation of the psbU gene resulted in marked changes in the acclimative responses of cells to high temperature: Mutated cells were unable to increase the thermal stability of their oxygen-evolving machinery when grown at moderately high temperatures. Moreover, the cellular thermotolerance of the mutated cells failed to increase upon acclimation of cells to high temperature. The heat-shock response, as assessed in terms of the levels of homologs of the heat-shock proteins Hsp60, Hsp70, and Hsp17, was unaffected by the mutation in psbU, suggesting that heat-shock proteins were not involved in the changes in the acclimative responses. Our observations indicate that PsbU is involved in the mechanism that underlies the enhancement of the thermal stability of the oxygen-evolving machinery and that the stabilization of the oxygen-evolving machinery is crucial for the acquisition of cellular thermotolerance.
机译:PsbU是蓝细菌和红藻的光系统II复合体的外在蛋白。我们以前的体外研究(Y. Nishiyama,DA Los,H。Hayashi,N。Murata [1997] Plant Physiol 115:1473-1480)表明,PsbU可稳定光系统II复合物的放氧机制,以防止热诱导的失活。在蓝藻Synechococcus sp。中。 PCC7002。为了阐明PsbU在体内的作用,我们灭活了Synechococcus sp。中的psbU基因。 PCC 7002通过靶向诱变。 psbU基因的失活导致细胞对高温的适应性反应发生显着变化:在中等高温下生长时,突变的细胞无法提高其氧气释放机制的热稳定性。而且,当细胞适应高温时,突变细胞的细胞耐热性不能增加。根据热休克蛋白Hsp60,Hsp70和Hsp17的同源物水平评估,热休克反应不受以下基因的影响: psbU中的突变,表明热激蛋白 不参与适应性反应的变化。我们的 观察结果表明PsbU参与了 增强了热稳定性 制氧机械及其稳定 制氧设备对于获取细胞至关重要 耐热性。

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