Fritz Haber Center for Molecular Dynamics Research, Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 9190401, Israel.
DTU Chemistry, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.
Molecules. 2021 Dec 23;27(1):71. doi: 10.3390/molecules27010071.
Bistable rhodopsins have two stable forms that can be interconverted by light. Due to their ability to act as photoswitches, these proteins are considered as ideal candidates for applications such as optogenetics. In this work, we analyze a recently crystalized bistable rhodopsin, namely the jumping spider rhodopsin-1 (JSR1). This rhodopsin exhibits identical absorption maxima for the parent and the photoproduct form, which impedes its broad application. We performed hybrid QM/MM simulations to study three isomers of the retinal chromophore: the 9-, 11- and all- configurations. The main aim was to gain insight into the specific interactions of each isomer and their impact on the absorption maximum in JSR1. The absorption spectra were computed using sampled snapshots from QM/MM molecular dynamics trajectories and compared to their experimental counterparts. The chromophore-protein interactions were analyzed by visualizing the electrostatic potential of the protein and projecting it onto the chromophore. It was found that the distance between a nearby tyrosine (Y126) residue plays a larger role in the predicted absorption maximum than the primary counterion (E194). Geometric differences between the isomers were also noted, including a structural change in the polyene chain of the chromophore, as well as changes in the nearby hydrogen bonding network.
双稳态视蛋白有两种稳定的形式,可以通过光相互转化。由于它们能够作为光开关,这些蛋白质被认为是光遗传学等应用的理想候选者。在这项工作中,我们分析了一种最近结晶的双稳态视蛋白,即跳蛛视蛋白-1(JSR1)。这种视蛋白的母体和光产物形式的吸收最大值相同,这阻碍了它的广泛应用。我们进行了混合 QM/MM 模拟,以研究视黄醛发色团的三种异构体:9-、11-和全-构型。主要目的是深入了解每种异构体的特定相互作用及其对视蛋白 JSR1 吸收最大值的影响。使用从 QM/MM 分子动力学轨迹中采样的快照计算吸收光谱,并将其与实验结果进行比较。通过可视化蛋白质的静电势并将其投射到发色团上来分析发色团-蛋白质相互作用。结果发现,附近酪氨酸(Y126)残基之间的距离比主要抗衡离子(E194)在预测的吸收最大值中起更大的作用。还注意到异构体之间存在几何差异,包括发色团的多烯链的结构变化以及附近氢键网络的变化。