卤素酶黄酶的光还原效率、辅因子亲和力和变构偶联之间的平衡。

IF 2.7 3区 化学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Photochemical & Photobiological Sciences Pub Date : 2025-01-01 Epub Date: 2024-12-30 DOI:10.1007/s43630-024-00670-y
Niklas Diepold, Friederike Reese, Tina Prior, Christian Schnepel, Norbert Sewald, Tilman Kottke
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引用次数: 0

摘要

黄素依赖性卤素酶(FDHs)是生物催化可持续生产卤化有机分子的有前途的候选物。FDHs只需要氧气、卤化物和完全还原的黄素腺嘌呤二核苷酸(FADH-)辅助因子就能产生反应性HOX, HOX扩散10 Å到底物结合袋,并实现区域选择性氧化卤化。FADH-的再生是FADH-应用面临的一个关键挑战。在体外,FADH-可以通过使用蓝光光还原蛋白质内部氧化的FAD来再生,将卤化酶转化为低效的人工光酶。本研究旨在通过结构引导诱变的方法,提高rugosporus链霉菌中色氨酸5-卤素酶PyrH的光化学性质。靠近FAD的保守wxwxip基序W279和W281与苯丙氨酸交换。时间分辨紫外-可见光谱表明,W281F交换确实分别提高了单电子还原和双电子还原的量子产率。通过荧光各向异性检测,随着解离常数从31 μM增加到74 μM,辅因子的结合亲和力略有下降。FTIR差谱分析表明,FAD与底物结合位点之间的变构耦合基本保持不变。相比之下,双突变体没有进一步提高产量,反而对结合亲和力和结构偶联产生负面影响。在所有参数中,远端W279F置换效果较差。另外,可逆的非活性构象延迟了光还原。我们的结论是,有一个微妙的平衡,要考虑筛选外佣的生物催化。变异PyrH-W281F作为人工光酶最有应用前景。
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Balance between photoreduction efficiency, cofactor affinity, and allosteric coupling of halogenase flavoenzymes.

Flavin-dependent halogenases (FDHs) are promising candidates for the sustainable production of halogenated organic molecules by biocatalysis. FDHs require only oxygen, halide and a fully reduced flavin adenine dinucleotide (FADH-) cofactor to generate the reactive HOX that diffuses 10 Å to the substrate binding pocket and enables regioselective oxidative halogenation. A key challenge for the application of FDHs is the regeneration of the FADH-. In vitro, FADH- can be regenerated by photoreduction of the oxidized FAD inside the protein using blue light, turning the halogenase into an inefficient artificial photoenzyme. We aimed to improve the photochemical properties of the tryptophan 5-halogenase PyrH from Streptomyces rugosporus by structure-guided mutagenesis. W279 and W281 of the conserved WxWxIP-motif close to FAD were exchanged against phenylalanine. Time-resolved UV-vis spectroscopy showed that the W281F exchange indeed increased the quantum yield of the one- and two-electron reduction, respectively. The cofactor binding affinity decreased slightly with dissociation constants rising from 31 to 74 μM, as examined by fluorescence anisotropy. FTIR difference spectroscopy demonstrated that the allosteric coupling between the FAD and substrate binding sites was mostly preserved. In contrast, the double mutant did not improve the yield further, while negatively affecting binding affinity and structural coupling. The distal W279F exchange was less effective in all parameters. Photoreductions were additionally delayed by a reversible inactive conformation. We conclude that there is a delicate balance to be considered for screening of FDHs for biocatalysis. Variant PyrH-W281F was found to be the most promising candidate for the application as artificial photoenzyme.

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来源期刊
Photochemical & Photobiological Sciences
Photochemical & Photobiological Sciences 生物-生化与分子生物学
CiteScore
5.60
自引率
6.50%
发文量
201
审稿时长
2.3 months
期刊介绍: A society-owned journal publishing high quality research on all aspects of photochemistry and photobiology.
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