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金丝桃素(圣约翰草中的活性成分)对晶状体α-晶状体蛋白的光氧化作用。

Photooxidation of lens alpha-crystallin by hypericin (active ingredient in St. John's Wort).

作者信息

Schey K L, Patat S, Chignell C F, Datillo M, Wang R H, Roberts J E

机构信息

Department of Cell and Molecular Pharmacology and Experimental Therapeutics, Medical University of South Carolina, Charleston, USA.

出版信息

Photochem Photobiol. 2000 Aug;72(2):200-3. doi: 10.1562/0031-8655(2000)072<0200:polcbh>2.0.co;2.

Abstract

Hypericin is the active ingredient in the over the counter antidepressant medication St. John's Wort. Hypericin produces singlet oxygen and other excited state intermediates that indicate it should be a very efficient phototoxic agent in the eye. Furthermore it absorbs in the UV and visible range, which means it can potentially damage both the lens and the retina. Lens alpha-crystallin, isolated from calf lenses, was irradiated in the presence of hypericin (5 x 10(-5) M, 10 mM ammonium bicarbonate, pH 7.0) and in the presence and absence of light (> 300 nm, 24 mW/cm2). Hypericin-induced photosensitized photopolymerization as assessed by sodium dodecylsulfate-polyacrylamide gel electrophoresis. Further analysis of the oxidative changes occurring in alpha-crystallin using mass spectrometry showed specific oxidation of methionine, tryptophan and histidine residues, which increased with irradiation time. Hypericin did not damage the lens protein in the dark. Damage to alpha-crystallin could undermine the integrity of the lens directly by protein denaturation and indirectly by disturbing chaperone function. Therefore, in the presence of light, hypericin can induce changes in lens protein that could lead to the formation of cataracts. Appropriate precautions should be taken to protect the eye from intense sunlight while on this antidepressant medication.

摘要

金丝桃素是非处方抗抑郁药物圣约翰草中的活性成分。金丝桃素会产生单线态氧和其他激发态中间体,这表明它在眼睛中应该是一种非常有效的光毒性剂。此外,它在紫外线和可见光范围内有吸收,这意味着它可能会损害晶状体和视网膜。从小牛晶状体中分离出的晶状体α-晶体蛋白,在有金丝桃素(5×10⁻⁵ M,10 mM碳酸氢铵,pH 7.0)的情况下,以及在有光和无光(> 300 nm,24 mW/cm²)的情况下进行照射。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳评估金丝桃素诱导的光敏光聚合作用。使用质谱对α-晶体蛋白中发生的氧化变化进行进一步分析,结果显示甲硫氨酸、色氨酸和组氨酸残基发生了特异性氧化,且随着照射时间的增加而增加。金丝桃素在黑暗中不会损害晶状体蛋白。对α-晶体蛋白的损害可能会直接通过蛋白质变性破坏晶状体的完整性,也可能会间接通过干扰伴侣功能来破坏。因此,在有光的情况下,金丝桃素会诱导晶状体蛋白发生变化,从而可能导致白内障的形成。在服用这种抗抑郁药物期间,应采取适当的预防措施来保护眼睛免受强烈阳光的照射。

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