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Boosting photobioredox catalysis by morpholine electron donors under aerobic conditions

机译:提高photobioredox吗啉催化在有氧条件下电子给体

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摘要

Light-driven reduction of flavins, e.g. FAD or FMN, by sacrificial electron donors emerged as a convenient method to promote biocatalytic transformations. However, flavin activation has been restricted to oxygen-free conditions to prevent enzyme deactivation caused by reactive oxygen species (ROS). Herein, we show that the photoreduction of FMN by morpholines, including 3-(N-morpholino)propanesulfonic acid (MOPS), lessens the deactivation of the enoate reductase XenB from Pseudomonas sp. during the stereoselective asymmetric enzymatic reduction of a model ,-unsaturated diketone under aerobic conditions, leading to a 91% GC-yield and a stereoselectivity greater than 94%. The kinetic stability of the thermolabile XenB was increased by more than 20-fold in MOPS buffer compared to that in Tris-HCl buffer, and a pronounced positive effect on the transition midpoint temperature was observed. The reactive form of the FMN photocatalyst is stabilized by the formation of a (3)[FMN--MOPS+] ensemble, which reduces the formation of hydrogen peroxide and other ROS in the presence of oxygen. These results contribute to broaden the application of photobiocatalytic transformations using flavin-dependent reductases.
机译:Light-driven减少黄素,例如时尚或FMN、祭祀作为电子给体出现方便的方法促进biocatalytic转换。被限制在无氧的条件防止酶失活反应造成的氧物种(ROS)。光致还原作用的FMN吗啉,包括(3) - N-morpholino propanesulfonic酸(拖把),减少enoate还原酶的失活从假单胞菌XenB sp.期间立体选择酶促不对称还原的一个模型,不饱和二酮在有氧条件,导致GC-yield 91%,立体选择性大于94%。稳定的不耐热的XenB增加超过20倍相比,拖把缓冲区Tris-HCl缓冲区,和明显积极的影响中点的过渡观察温度。的单核苷酸FMN光催化剂的稳定是。的形成(3)(FMN——拖把+)合奏降低过氧化氢和的形成其他ROS的氧气。结果导致扩大的应用photobiocatalytic转换使用flavin-dependent还原酶。

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