JOURNAL ARTICLE

A Photodetoxification Mechanism of the Cyanobacterial Hepatotoxin Microcystin-LR by Ultraviolet Irradiation

Kunimitsu KayaTomoharu Sano

Year: 1998 Journal:   Chemical Research in Toxicology Vol: 11 (3)Pages: 159-163   Publisher: American Chemical Society

Abstract

When microcystin-LR was exposed to UV, three major nontoxic compounds were formed. These compounds were identified as [4(E),6(Z)-Adda5]- and [4(Z),6(E)-Adda5]microcystin-LR, which are geometrical isomers of the Adda [3-amino-9-methoxy-2,6,8-trimethyl-10-phenyl-4(E),6(E)-decadienoic acid] moiety of microcystin-LR, and a novel compound, tricyclo-Adda [(2S,3S,1'R,3'S,4'S,5'R,6'R,7'R)-3-amino-5-(4',6'-dimethyl-3'-methoxy tricyclo[5.4.0.0(1',5')]undeca-8',10'-dien-6'-yl)-2-methy l-4(E)-pentenoic acid]-containing microcystin-LR ([tricyclo-Adda5]microcystin-LR), which was formed by [2 + 2] addition between the benzene ring and the double bond at position 6-7 of the Adda moiety of the microcystin. The geometrical isomers were formed reversibly, and their equilibrium constants were almost the same. [Tricyclo-Adda5]microcystin-LR was also formed reversibly and was decomposed under UV light. These results suggest that the breakdown of microcystin-LR by UV irradiation proceeds via [tricyclo-Adda5]microcystin-LR.

Keywords:
Moiety Hepatotoxin Microcystin Chemistry Stereochemistry Microcystin-LR Double bond Cyanobacteria Organic chemistry Bacteria Biology Toxicity

Metrics

56
Cited By
1.50
FWCI (Field Weighted Citation Impact)
9
Refs
0.79
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Aquatic Ecosystems and Phytoplankton Dynamics
Physical Sciences →  Environmental Science →  Environmental Chemistry
Biocrusts and Microbial Ecology
Life Sciences →  Agricultural and Biological Sciences →  Ecology, Evolution, Behavior and Systematics
Chemical synthesis and alkaloids
Physical Sciences →  Chemistry →  Organic Chemistry
© 2026 ScienceGate Book Chapters — All rights reserved.