Howard Hughes Medical Institute, University of California, Berkeley, CA 94720;
Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720-3102.
Proc Natl Acad Sci U S A. 2019 Aug 13;116(33):16631-16640. doi: 10.1073/pnas.1903314116. Epub 2019 Jul 29.
Photosystem II (PSII) undergoes frequent photooxidative damage that, if not repaired, impairs photosynthetic activity and growth. How photosynthetic organisms protect vulnerable PSII intermediate complexes during de novo assembly and repair remains poorly understood. Here, we report the genetic and biochemical characterization of chloroplast-located rubredoxin 1 (RBD1), a PSII assembly factor containing a redox-active rubredoxin domain and a single C-terminal transmembrane α-helix (TMH) domain. RBD1 is an integral thylakoid membrane protein that is enriched in stroma lamellae fractions with the rubredoxin domain exposed on the stromal side. RBD1 also interacts with PSII intermediate complexes containing cytochrome Complementation of the (hereafter ) RBD1-deficient mutant with constructs encoding RBD1 protein truncations and site-directed mutations demonstrated that the TMH domain is essential for de novo PSII assembly, whereas the rubredoxin domain is involved in PSII repair. The rubredoxin domain exhibits a redox midpoint potential of +114 mV and is proficient in 1-electron transfers to a surrogate cytochrome in vitro. Reduction of oxidized RBD1 is NADPH dependent and can be mediated by ferredoxin-NADP reductase (FNR) in vitro. We propose that RBD1 participates, together with the cytochrome , in the protection of PSII intermediate complexes from photooxidative damage during de novo assembly and repair. This role of RBD1 is consistent with its evolutionary conservation among photosynthetic organisms and the fact that it is essential in photosynthetic eukaryotes.
光系统 II(PSII)会频繁发生光氧化损伤,如果得不到修复,就会损害光合作用活性和生长。在从头组装和修复过程中,光合生物如何保护易受损伤的 PSII 中间复合物,目前还知之甚少。在这里,我们报告了定位于叶绿体的 rubredoxin 1(RBD1)的遗传和生化特征,它是一种 PSII 组装因子,含有一个氧化还原活性的 rubredoxin 结构域和一个单一的 C 端跨膜α螺旋(TMH)结构域。RBD1 是一种完整的类囊体膜蛋白,在基质层片的富含区中富集,其 rubredoxin 结构域暴露在基质侧。RBD1 还与含有细胞色素的 PSII 中间复合物相互作用。用编码 RBD1 蛋白截断和定点突变的构建体对 (以下简称 )RBD1 缺陷的 突变体进行互补,证明 TMH 结构域对于从头组装 PSII 是必不可少的,而 rubredoxin 结构域参与 PSII 的修复。rubredoxin 结构域表现出+114 mV 的氧化还原中点电位,并且能够在体外将 1 个电子有效地转移到替代的细胞色素 上。氧化的 RBD1 的还原是 NADPH 依赖性的,并且可以在体外由铁氧还蛋白-NADP 还原酶(FNR)介导。我们提出,RBD1 与细胞色素 一起,在从头组装和修复过程中参与保护 PSII 中间复合物免受光氧化损伤。RBD1 的这种作用与其在光合生物中的进化保守性以及它在光合真核生物中是必需的这一事实是一致的。