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研究铝(Al(3+))作用下光系统 I 的结构变化和光化学活性。

Characterization of the structural changes and photochemical activity of photosystem I under Al(3+) effect.

机构信息

Groupe de Recherche en Biologie Végétale, Département de Chimie, Biochimie et Physique, Université du Québec à Trois-Rivières, Trois-Rivières, Qc G9A 5H7, Canada.

Laboratory of Physiology and Biochemistry of Salt Tolerance in Plants, Faculty of Sciences of Tunis, Campus University, 1060, Tunisia.

出版信息

J Photochem Photobiol B. 2015 Aug;149:292-9. doi: 10.1016/j.jphotobiol.2015.06.012. Epub 2015 Jun 15.

Abstract

The photochemical activity of photosystem I (PSI) as affected by Al(3+) was investigated in thylakoid membranes and PSI submembrane fractions isolated from spinach. Biophysical and biochemical techniques such as oxygen uptake, light induced absorbance changes at 820nm, chlorophyll fluorescence emission, SDS-polyacrylamide gel electrophoresis, and FTIR spectroscopy have been used to analyze the sites and action modes of this cation on the PSI complex. Our results showed that Al(3+) above 3mM induces changes in the redox state of P700 reflected by an increase of P700 photooxidation phase and a delay of the slower rate of P700 re-reduction which reveals that Al(3+) exerted an inhibitory action at the donor side of PSI especially at plastocyanin (PC). Furthermore, results of P700 photooxidation monitored in the presence of DCMU with or without MV suggested that the same range of Al(3+) concentrations impairs the photochemical reaction centers (RC) of PSI, as shown by the decline in the amount of active population of P700, and disrupts the charge separation between P700 and the primary electron acceptor A0 leading to the inhibition of electron transfer at the acceptor side of PSI. These inhibitory actions were also accompanied by an impairment of the energy transfer from light harvesting complex (LHCI) to RC of PSI, following the disconnection of LHCI antenna as illustrated by an enhancement of chlorophyll fluorescence emission spectra at low temperature (77K). The above results coincided with FTIR measurements that indicated a conformational change of the protein secondary structures in PSI complex where 25% of α-helix was converted into β-sheet, β-antiparallel and turn structures. These structural changes in PSI complex proteins are closely related with the alteration photochemical activity of PSI including the inhibition of the electron transport through both acceptor and donor sides of PSI.

摘要

我们研究了 Al(3+) 对光系统 I(PSI)光化学活性的影响,实验对象为菠菜的类囊体膜和 PSI 亚膜部分。我们采用了氧摄取、820nm 光诱导吸收变化、叶绿素荧光发射、SDS-聚丙烯酰胺凝胶电泳和傅里叶变换红外光谱等生物物理和生化技术来分析这种阳离子在 PSI 复合物上的作用位点和作用模式。我们的结果表明,3mM 以上的 Al(3+) 会改变 P700 的氧化还原状态,表现为 P700 光氧化相增加和较慢的 P700 再还原速率延迟,这表明 Al(3+) 对 PSI 的供体侧,特别是质体蓝素(PC)具有抑制作用。此外,在 DCMU 存在或不存在 MV 的情况下监测 P700 光氧化的结果表明,相同范围的 Al(3+) 浓度会损害 PSI 的光化学反应中心(RC),这表现为 P700 的活性种群数量减少,以及破坏 P700 和初级电子受体 A0 之间的电荷分离,导致 PSI 受体侧的电子转移受到抑制。这些抑制作用还伴随着从 LHC 到 PSI RC 的能量转移的损害,这表现为 LHC 天线的断开,如低温(77K)下叶绿素荧光发射光谱的增强。上述结果与 FTIR 测量结果一致,表明 PSI 复合物中蛋白质二级结构的构象发生了变化,其中 25%的α-螺旋转化为β-折叠、β-反平行和转角结构。PSI 复合物蛋白的这些结构变化与 PSI 光化学活性的改变密切相关,包括对 PSI 受体和供体两侧电子传递的抑制。

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