Forsman Jack A, Eaton-Rye Julian J
Department of Biochemistry, University of Otago, Dunedin 9016, New Zealand.
Biochemistry. 2021 Jan 12;60(1):53-63. doi: 10.1021/acs.biochem.0c00668. Epub 2020 Dec 17.
The X-ray-derived Photosystem II (PS II) structure from the thermophilic cyanobacterium (Protein Data Bank entry 4UB6) indicates Phe239 of the DE loop of the D1 protein forms a hydrophobic interaction with Pro27 and Ile29 at the C-terminus of the 5 kDa PsbT protein found at the monomer-monomer interface of the PS II dimer. To investigate the importance of this interaction, we created the F239A and F239L mutants in sp. PCC 6803 through targeted mutagenesis of the D1:Phe239 residue into either an alanine or a leucine. Under moderate-light conditions, the F239A strain displayed reduced rates of oxygen evolution and impaired rates of fluorescence decay following a single-turnover actinic flash, while the F239L strain behaved like the control; however, under high-light conditions, the F239A and F239L strains grew more slowly than the control. Our results indicate the quinone-iron acceptor complex becomes more accessible to exogenously added electron acceptors in the F239A mutant and a ΔPsbT strain when compared with the control and F239L strains. This led to the hypothesis that the interaction between D1:Phe239 and the PsbT subunit is required to restrict movement of the DE loop of the D1 subunit, and we suggest disruption of this interaction may perturb the binding of bicarbonate to the non-heme iron and contribute to the signal for PS II to undergo repair following photodamage.
来自嗜热蓝细菌的X射线衍生光系统II(PS II)结构(蛋白质数据库条目4UB6)表明,D1蛋白DE环的Phe239与位于PS II二聚体单体 - 单体界面的5 kDa PsbT蛋白C末端的Pro27和Ile29形成疏水相互作用。为了研究这种相互作用的重要性,我们通过将D1:Phe239残基靶向突变为丙氨酸或亮氨酸,在集胞藻PCC 6803中创建了F239A和F239L突变体。在中等光照条件下,F239A菌株的放氧速率降低,单周转光化闪光后的荧光衰减速率受损,而F239L菌株的表现与对照相似;然而,在高光条件下,F239A和F239L菌株的生长比对照慢。我们的结果表明,与对照和F239L菌株相比,F239A突变体和ΔPsbT菌株中的醌 - 铁受体复合物对外源添加的电子受体更易接近。这导致了一个假设,即D1:Phe239与PsbT亚基之间的相互作用是限制D1亚基DE环运动所必需的,并且我们认为这种相互作用的破坏可能会扰乱碳酸氢盐与非血红素铁的结合,并导致PS II在光损伤后进行修复的信号产生。