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紫菜-334类菌孢素氨基酸超快去激发途径的内在本质

Intrinsic Nature of the Ultrafast Deexcitation Pathway of Mycosporine-like Amino Acid Porphyra-334.

作者信息

Hatakeyama Makoto, Nakamura Shinichiro

机构信息

Sanyo-Onoda City University, 1-1-1 Daigakudori, Sanyo-Onoda, Yamaguchi 756-0884, Japan.

Kumamoto University, 2-39-1 Kurokami, Chuo-ku, Kumamoto 860-8555, Japan.

出版信息

J Phys Chem A. 2022 Oct 20;126(41):7460-7467. doi: 10.1021/acs.jpca.2c05034. Epub 2022 Oct 7.

Abstract

Porphyra-334 is a member of natural UV-screening compounds named mycosporine-like amino acids found in several marine organisms. The UV excited porphyra-334 has been identified to deexcite quickly by puckering the intramolecular cyclohexenimine ring; however, the reason for such a ring-puckering occurrence is yet unclear. In this study, we show the ring-puckering to be the relaxation pathway of the UV excited π electron which shifts from the in-ring bond to the out-of-ring bond. The ring-puckering is characterized by the torsion among the in-ring and out-of-ring bonds. Since the π electron shift is possible in two different directions at the Franck-Condon UV excited state, it enables two ring-puckering pathways: the previously reported pathway and another one newly identified at present. We also examine the ring-unpuckering pathways which are an analogy of cis/trans photoisomerization, and we find them to be not suited for the π electron shift character of the UV excited state and thus not related to the deexcitation pathway. The present study provides insight into how porphyra-334 exerts the UV-screening ability based on its cyclohexenimine ring structure.

摘要

紫菜-334是在几种海洋生物中发现的名为类菌孢素氨基酸的天然紫外线屏蔽化合物的一种。已确定紫外线激发的紫菜-334通过使分子内环己烯亚胺环起皱而迅速去激发;然而,这种环起皱现象发生的原因尚不清楚。在本研究中,我们表明环起皱是紫外线激发的π电子从环内键转移到环外键的弛豫途径。环起皱的特征是环内和环外键之间的扭转。由于在弗兰克-康登紫外线激发态下π电子可以在两个不同方向上移动,因此它有两种环起皱途径:先前报道的途径和目前新发现的另一种途径。我们还研究了作为顺/反式光异构化类似物的环展平途径,发现它们不适合紫外线激发态的π电子转移特性,因此与去激发途径无关。本研究深入了解了紫菜-334如何基于其环己烯亚胺环结构发挥紫外线屏蔽能力。

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