氨基酸
生物化学
化学
抗氧化剂
化学结构
糖基化
立体化学
化学改性
生物活性
化学稳定性
环己酮
结构-活动关系
生物
酶
透明质酸酶
天然化合物
法尼醇
糖苷
作者
Taiki Aono,Erika Katayama,Tomoki Tsuboi,Sasiprapa Samsri,Rungaroon Waditee‐Sirisattha,Hakuto Kageyama
摘要
Mycosporine-like amino acids (MAAs) are natural compounds widely studied for their photoprotective and antioxidant properties. Typical MAAs consist of one or two amino acids attached to a cyclohexenone or cyclohexenimine ring, whereas atypical MAAs possess unique chemical modifications such as glycosylation and methylation. Recently, we identified an atypical MAA, GlcHMS326, from the cyanobacterium Gloeocapsa sp. BRSZ, characterized by glycosylation, methylation, and hydroxylation. In this study, we compared the chemical stability and biological activities of GlcHMS326 with those of a typical di-substituted MAA, porphyra-334. GlcHMS326 was less stable under high-temperature conditions but showed a slightly higher residual rate than porphyra-334 under the present visible-light exposure conditions. Functionally, GlcHMS326 showed stronger antioxidant and collagenase inhibitory activities but weaker antiglycative activity. Neither compound inhibited hyaluronidase activity. Both MAAs inhibited angiotensin-converting enzyme, with porphyra-334 showing stronger inhibition. These results provide insights into how chemical modifications influence the functional properties of MAAs.
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