Hatakeyama Makoto, Nakamura Shinichiro
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.
ACS Phys Chem Au. 2025 Feb 26;5(3):274-282. doi: 10.1021/acsphyschemau.4c00107. eCollection 2025 May 28.
Mycosporine-like amino acids (MAAs) are a family of hydrophilic sunscreen compounds synthesized by aquatic organisms, such as algae and cyanobacteria. In this study, we demonstrate that porphyra-334, which is a common MAA, decays nonradiatively within several hundred femtoseconds after ultraviolet (UV) light absorption in water by rotating the intramolecular cyclohexenimine ring. The ring rotation resulted from the UV excitation of the intramolecular π-conjugation, and the ring rotation proceeded while preserving the hydrogen bonds with the surrounding water molecules. The hydrogen bonds were preserved due to the structural flexibility of the ring-attached amino acids of porphyra-334. The amino acids maintained their center of mass positions during the ring-rotating nonradiative decay. The amino acids and cyclohexenimine ring are analogous to the string and button of a button-on-a-string spinner, otherwise known as button whirligigs. Thus, we refer to the ring-rotating nonradiative decay of porphyra-334 as a button-on-a-string mechanism. We also show that this mechanism results from porphyra-334 itself rather than from the surrounding water molecules. The present results indicate that the molecular "spinner" exists in aquatic organisms and protects them from UV with the aid of water.
类菌孢素氨基酸(MAAs)是一类由水生生物(如藻类和蓝细菌)合成的亲水性防晒化合物。在本研究中,我们证明了常见的MAAs——紫菜-334,在水中吸收紫外线(UV)后,通过分子内环己烯亚胺环的旋转,在几百飞秒内发生无辐射衰变。环的旋转是由分子内π共轭的紫外线激发引起的,并且在与周围水分子保持氢键的同时进行环的旋转。由于紫菜-334环连接氨基酸的结构灵活性,氢键得以保留。在环旋转的无辐射衰变过程中,氨基酸保持其质心位置。氨基酸和环己烯亚胺环类似于绳上纽扣旋转器(也称为纽扣陀螺)的绳子和纽扣。因此,我们将紫菜-334的环旋转无辐射衰变称为绳上纽扣机制。我们还表明,这种机制是由紫菜-334本身而非周围水分子导致的。目前的结果表明,分子“旋转器”存在于水生生物中,并借助水保护它们免受紫外线的伤害。