Department of Physics, University of Pretoria, Lynnwood Road, Pretoria, 0002, South Africa.
Forestry and Agricultural Biotechnology Institute (FABI), University of Pretoria, Lynnwood Road, Pretoria, 0002, South Africa.
Photosynth Res. 2024 Apr;160(1):17-29. doi: 10.1007/s11120-024-01078-6. Epub 2024 Feb 26.
Phycobilisomes (PBs) play an important role in cyanobacterial photosynthesis. They capture light and transfer excitation energy to the photosynthetic reaction centres. PBs are also central to some photoprotective and photoregulatory mechanisms that help sustain photosynthesis under non-optimal conditions. Amongst the mechanisms involved in excitation energy dissipation that are activated in response to excessive illumination is a recently discovered light-induced mechanism that is intrinsic to PBs and has been the least studied. Here, we used single-molecule spectroscopy and developed robust data analysis methods to explore the role of a terminal emitter subunit, ApcE, in this intrinsic, light-induced mechanism. We isolated the PBs from WT Synechocystis PCC 6803 as well as from the ApcE-C190S mutant of this strain and compared the dynamics of their fluorescence emission. PBs isolated from the mutant (i.e., ApcE-C190S-PBs), despite not binding some of the red-shifted pigments in the complex, showed similar global emission dynamics to WT-PBs. However, a detailed analysis of dynamics in the core revealed that the ApcE-C190S-PBs are less likely than WT-PBs to enter quenched states under illumination but still fully capable of doing so. This result points to an important but not exclusive role of the ApcE pigments in the light-induced intrinsic excitation energy dissipation mechanism in PBs.
藻胆体(PBs)在蓝细菌光合作用中起着重要作用。它们捕获光线并将激发能转移到光合作用反应中心。PBs 也是一些光保护和光调节机制的核心,有助于在非最佳条件下维持光合作用。在响应过量光照而激活的激发能耗散机制中,有一种最近发现的内在的、光诱导的机制,这是研究最少的。在这里,我们使用单分子光谱学并开发了强大的数据分析方法来探索末端发射体亚基 ApcE 在这种内在的、光诱导的机制中的作用。我们从 WT Synechocystis PCC 6803 中分离 PB 以及该菌株的 ApcE-C190S 突变体,并比较了它们荧光发射的动力学。尽管从突变体(即 ApcE-C190S-PB)中分离的 PB 不结合复合物中的一些红移色素,但它们的整体发射动力学与 WT-PB 相似。然而,对核心动力学的详细分析表明,与 WT-PB 相比,ApcE-C190S-PB 在光照下进入猝灭状态的可能性较小,但仍完全有能力进入猝灭状态。这一结果表明 ApcE 色素在 PB 中的光诱导内在激发能耗散机制中起着重要但不是唯一的作用。