Department of Chemistry, University of Louisville, Louisville, KY 40292, United States.
Institute of Chemistry, Faculty of Science and Technology, University of Silesia in Katowice, Szkolna 9, PL-40 006 Katowice, Poland.
J Photochem Photobiol B. 2023 Aug;245:112751. doi: 10.1016/j.jphotobiol.2023.112751. Epub 2023 Jun 26.
CarH is a cobalamin-based photoreceptor which has attracted significant interest due to its complex mechanism involving its organometallic coenzyme-B chromophore. While several experimental and computational studies have sought to understand CarH's mechanism of action, there are still many aspects of the mechanism which remain unclear. While light is needed to activate the Co-C bond, it is not entirely clear whether reaction pathway involves singlet or triplet diradical states. A recent experimental study implicated triplet pathway and importance of intersystem crossing (ISC) as a viable mechanistic route for photoproduct formation in CarH. Herein, a combined quantum mechanics/molecular mechanics approach (QM/MM) was used to explore the involvement of triplet states in CarH. Two possibilities were explored. The first possibility involved photo-induced homolytic cleavage of the Co-C where the radical pair (RP) would deactivate to a triplet state (T) on the ground state potential energy surface (PES). However, a pathway for the formation of the photoproduct, 4',5'-anhydroadenosine (anhAdo), on the triplet ground state PES was not energetically feasible. The second possibility involved exploring a manifold of low-lying triplet excited states computed using TD-DFT within the QM/MM framework. Viable crossings of triplet excited states with singlet excited states were identified using semiclassical Landau-Zener theory and the effectiveness of spin-orbit coupling by El-Sayed rules. Several candidates along both the Co-N potential energy curve (PEC) and Co-C/Co-N PES were identified, which appear to corroborate experimental findings and implicate the possible role of triplet states in CarH.
CarH 是一种钴胺素基光受体,由于其涉及有机金属辅酶-B 发色团的复杂机制,因此引起了极大的关注。虽然已经有几项实验和计算研究试图了解 CarH 的作用机制,但该机制仍有许多方面尚不清楚。虽然光需要激活 Co-C 键,但仍不完全清楚反应途径是否涉及单重态或三重态自由基态。最近的一项实验研究表明,三重态途径和系间窜越(ISC)的重要性是 CarH 光产物形成的可行机制途径。在此,采用了量子力学/分子力学方法(QM/MM)来研究三重态在 CarH 中的参与情况。探索了两种可能性。第一种可能性涉及 Co-C 的光诱导均裂裂解,其中自由基对(RP)将在基态势能面(PES)上失活到三重态(T)。然而,在三重态基态 PES 上形成光产物 4',5'-脱水腺苷(anhAdo)的途径在能量上是不可行的。第二种可能性涉及使用 QM/MM 框架内的 TD-DFT 计算来探索一系列低能三重态激发态。使用半经典 Landau-Zener 理论和 El-Sayed 规则识别了三重态激发态与单重态激发态之间的可行交叉,并确定了几种沿 Co-N 势能曲线(PEC)和 Co-C/Co-N PES 的候选物,这似乎证实了实验结果并暗示了三重态在 CarH 中的可能作用。