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Bell-shaped dependence of the rate of ultrafast photoinduced electron transfer from aromatic amino acids to the excited flavin on the donor-acceptor distance in FMN binding proteins

机译:FMN结合蛋白中超快光诱导电子从芳族氨基酸转移到激发的黄素上的钟形依赖性对供体-受体距离的依赖性

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摘要

Flavin mononucleotide (FMN)-binding proteins (FBP) from Desulfovibrio vulgaris, Miyazaki F, contain FMN as a cofactor. Upon photo-excitation of the FBP, photoinduced electron transfer (ET) takes place from tryptophan (Trp)32, tyrosine (Tyr) 35 and Trp105 residues to the excited isoalloxazine ring (Iso~*) of FMN. The ultrafast fluorescence dynamics of the wild type, and the E13K, E13R, E13T and E13Q substitution isoforms of FBP were simultaneously analyzed with molecular dynamics simulation structures and Kakitani-Mataga ET theory, to obtain the time-dependent ET rates. A bell-shaped behavior of the logarithmic ET rates (InkET) from Trp32 and Trp106 to Iso? versus the centre-to-centre donor-acceptor distances (Rc) was obtained in the time domain of sub-ps to ps in all five FBP isoforms. The InkET from Tyr35 to Iso~* linearly decreased with the Rc distance, which were much slower than those of Trp32 and Trp105. These findings suggest that the nuclear term in the ET theory is important in the ultrafast time domain, whereas the electronic coupling term may be dominant in slower ET rates.
机译:来自宫崎骏(Miyazaki F)的脱硫脱硫弧菌的黄素单核苷酸(FMN)结合蛋白(FBP)含有FMN作为辅因子。 FBP光激发后,光致电子转移(ET)从色氨酸(Trp)32,酪氨酸(Tyr)35和Trp105残基发生到FMN的异异恶嗪环(Iso〜*)。利用分子动力学模拟结构和Kakitani-Mataga ET理论同时分析了野生型的超快荧光动力学以及FBP的E13K,E13R,E13T和E13Q取代同工型,以获得随时间变化的ET率。从Trp32和Trp106到Iso的对数ET率(InkET)呈钟形?相对于中心到中心的供体-受体距离(Rc)在所有五个FBP亚型中都在从ps到ps的时域中获得。从Tyr35到Iso〜*的InkET随Rc距离线性下降,比Trp32和Trp105慢得多。这些发现表明,ET理论中的核项在超快时域中很重要,而电子耦合项可能在较慢的ET速率中占主导地位。

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