首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >The role of the FtsH and Deg proteases in the repair of UV-B radiation-damaged Photosystem II in the cyanobacterium Synechocystis PCC 6803
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The role of the FtsH and Deg proteases in the repair of UV-B radiation-damaged Photosystem II in the cyanobacterium Synechocystis PCC 6803

机译:FtsH和Deg蛋白酶在蓝藻蓝藻PCC 6803中修复UV-B辐射破坏的光系统II中的作用

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The photosystem two (PSII) complex found in oxygenic photosynthetic organisms is susceptible to damage by UV-B irradiation and undergoes repair in vivo to maintain activity. Until now there has been little information on the identity of the enzymes involved in repair. In the present study we have investigated the involvement of the FtsH and Deg protease families in the degradation of UV-B-damaged PSII reaction center subunits, D1 and D2, in the cyanobacterium Synechocystis 6803. PSII activity in a ΔFtsH (slr0228) strain, with an inactivated slr0228 gene, showed increased sensitivity to UV-B radiation and impaired recovery of activity in visible light after UV-B exposure. In contrast, in ΔDeg-G cells, in which all the three deg genes were inactivated, the damage and recovery kinetics were the same as in the WT. Immunoblotting showed that the loss of both the D1 and D2 proteins was retarded in ΔFtsH (slr0228) during UV-B exposure, and the extent of their restoration during the recovery period was decreased relative to the WT. However, in the ΔDeg-G cells the damage and recovery kinetics of D1 and D2 were the same as in the WT. These data demonstrate a key role of FtsH (slr0228), but not the Deg proteases, for the repair of PS II during and following UV-B radiation at the step of degrading both of the UV-B damaged D1 and D2 reaction center subunits.
机译:含氧光合生物中发现的两个光系统复合物(PSII)易受UV-B辐射的破坏,并在体内进行修复以维持活性。迄今为止,关于修复所涉及的酶的身份信息还很少。在本研究中,我们研究了FtsH和Deg蛋白酶家族在蓝藻Synechocystis 6803中对UV-B破坏的PSII反应中心亚基D1和D2降解的参与。带有灭活的slr0228基因的人显示出对UV-B辐射的敏感性增加,并且在暴露于UV-B后可见光中的活性恢复受损。相反,在所有三个deg基因均失活的ΔDeg-G细​​胞中,损伤和恢复动力学与野生型相同。免疫印迹显示,在UV-B暴露期间,ΔFtsH(slr0228)阻止了D1和D2蛋白的损失,并且相对于WT,它们在恢复期间的恢复程度有所降低。但是,在ΔDeg-G细​​胞中,D1和D2的损伤和恢复动力学与野生型相同。这些数据证明,在降解UV-B受损的D1和D2反应中心亚基的步骤中,FtsH(slr0228)发挥了关键作用,但在UV-B辐射期间和之后,对于修复PS II却没有作用。

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