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Involvement of sulfoquinovosyl diacylglycerol in the structural integrity and heat-tolerance of photosystem II

机译:磺基喹喔基二酰基甘油参与光系统II的结构完整性和耐热性

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摘要

To examine the role of sulfoquinovosyl diacylglycerol (SQDG) in thylakoid membranes, we compared the structural and functional properties of photosystem II (PSII) between a mutant of Chlamydomonas reinhardtii defective in SQDG (hf-2) and the wild type. The PSII core complex of hf-2, as compared with that of the wild type, showed structural fragility when solubilized with a detergent, dodecyl β-d-maltoside, suggesting that the physical properties of the PSII complex were altered by the loss of SQDG. On the other hand, exposure of the cells to 41 °C for 120 min in the dark decreased the PSII activity to 70% and 50% of the initial levels in the wild type and hf-2, respectively, which implies that the PSII activity, in the absence of SQDG, becomes less stable under heat-stress conditions. PSII inactivated to 60% of the initial level by dark incubation at 41 °C was reactivated by following illumination even at 41 °C to more than 90% in the wild type, but only to 70% in hf-2. These results suggest that PSII inactivated by heat recovers through some mechanism dependent on light, and that SQDG participates in functioning of the mechanism. The conformational disorder of PSII caused by the defect in SQDG might be correlated with the increased susceptibility of its activity to heat-stress.
机译:为了检查磺基喹喔基二酰基甘油(SQDG)在类囊体膜中的作用,我们比较了SQDG(hf-2)缺陷的莱茵衣藻的突变体和野生型之间的光系统II(PSII)的结构和功能特性。与野生型相比,hf-2的PSII核心复合物表现出结构脆性,当用去污剂十二烷基β-d-麦芽糖苷溶解时,表明PSII复合物的物理性质因SQDG的丢失而改变。 。另一方面,在黑暗中将细胞暴露于41°C 120分钟会使PSII活性分别降低至野生型和hf-2的初始水平的70%和50%,这表明PSII活性在没有SQDG的情况下,其在热应力条件下变得不稳定。通过在41°C的黑暗温育下灭活至初始水平60%的PSII,即使在41°C的照度下也可以重新激活,在野生型下甚至达到90%以上,而在hf-2中只有70%。这些结果表明,受热灭活的PSII通过某种依赖于光的机制得以恢复,并且SQDG参与了该机制的功能。由SQDG缺陷引起的PSII构象异常可能与其活动对热应激的敏感性增加有关。

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