Ozaydin Beste, Curutchet Carles
Departament de Farmàcia i Tecnologia Farmacèutica, i Fisicoquímica, Facultat de Farmàcia i Ciències de l'Alimentació, Universitat de Barcelona (UB), Barcelona, Spain.
Institut de Química Teòrica i Computacional (IQTCUB), Universitat de Barcelona (UB), Barcelona, Spain.
Front Mol Biosci. 2023 Sep 18;10:1268278. doi: 10.3389/fmolb.2023.1268278. eCollection 2023.
Protein scaffolds play a crucial role in tuning the light harvesting properties of photosynthetic pigment-protein complexes, influencing pigment-protein and pigment-pigment excitonic interactions. Here, we investigate the influence of thermal dynamic effects on the protein tuning mechanisms of phycocyanin PC645 and PC612 antenna complexes of cryptophyte algae, featuring closed or open quaternary structures. We employ a dual molecular dynamics (MD) strategy that combines extensive classical MD simulations with multiple short Born-Oppenheimer quantum/molecular mechanical (QM/MM) simulations to accurately account for both static and dynamic disorder effects. Additionally, we compare the results with an alternative protocol based on multiple QM/MM geometry optimizations of the pigments. Subsequently, we employ polarizable QM/MM calculations using time-dependent density functional theory (TD-DFT) to compute the excited states, and we adopt the full cumulant expansion (FCE) formalism to describe the absorption and circular dichroism spectra. Our findings indicate that thermal effects have only minor impacts on the energy ladder in PC612, despite its remarkable flexibility owing to an open quaternary structure. In striking contrast, thermal effects significantly influence the properties of PC645 due to the absence of a hydrogen bond controlling the twist of ring D in PCB β82 bilins, as well as the larger impact of fluctuations on the excited states of MBV pigments, which possess a higher conjugation length compared to other bilin types. Overall, the dual MD protocol combined with the FCE formalism yields excellent spectral properties for PC612 and PC645, and the resultant excitonic Hamiltonians pave the way for future investigations concerning the implications of open and closed quaternary structures on phycocyanin light harvesting properties.
蛋白质支架在调节光合色素 - 蛋白质复合物的光捕获特性方面起着至关重要的作用,影响着色素 - 蛋白质和色素 - 色素激子相互作用。在此,我们研究热动力学效应对于隐藻藻蓝蛋白PC645和PC612天线复合物(具有封闭或开放四级结构)的蛋白质调节机制的影响。我们采用双分子动力学(MD)策略,将广泛的经典MD模拟与多个短程的玻恩 - 奥本海默量子/分子力学(QM/MM)模拟相结合,以准确考虑静态和动态无序效应。此外,我们将结果与基于色素的多个QM/MM几何优化的替代方案进行比较。随后,我们使用含时密度泛函理论(TD-DFT)的可极化QM/MM计算来计算激发态,并采用全累积展开(FCE)形式来描述吸收光谱和圆二色光谱。我们的研究结果表明,尽管PC612由于开放的四级结构具有显著的灵活性,但热效应仅对其能量阶梯有轻微影响。与之形成鲜明对比的是,由于缺乏控制PCB β82胆色素中D环扭曲的氢键,以及波动对MBV色素激发态的更大影响(与其他胆色素类型相比,MBV色素具有更长的共轭长度),热效应显著影响PC645的性质。总体而言,双MD方案与FCE形式相结合,为PC612和PC645产生了出色的光谱特性,所得的激子哈密顿量为未来关于开放和封闭四级结构对藻蓝蛋白光捕获特性影响的研究铺平了道路。