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Updated: May 12, 2026

Early Detection of Cyanobacterial Blooms and Associated Cyanotoxins using Fast Detection Strategy
Published on: February 25, 2021
Proton and iron binding by the cyanobacterial toxin microcystin-LR
Annaleise R Klein1, Darren S Baldwin, Ewen Silvester
1Department of Environmental Management and Ecology, La Trobe University, Albury-Wodonga Campus, Victoria, Australia. a.klein@latrobe.edu.au
Abstract:
Microcystins (MCs) are a group of hepatotoxins produced by cyanobacteria that have not had their functional role or the environmental factors that trigger production clearly determined. One suggestion is that microcystins are siderophores (i.e., ligands with an extremely high affinity with iron, typically with stability constants substantially greater than 10(25)). In this work, we explore proton and iron binding with microcystin-LR (MC-LR). Using UV-visible spectroscopy and a HPLC peak retention time-based method, the two acid dissociation constants associated with the carboxylic groups of MC-LR were determined to be: pKa₁ = 2.17 and pKa₂ = 3.96. Cyclic voltammetry provides evidence for the formation of at least two Fe(III)-MC-LR complexes, with the Fe(III) reduction peak significantly shifted to more reducing potentials in the presence of MC-LR. These complexes have been interpreted as a rapidly formed initial complex (Complex 1) and a more stable, and slower forming, Complex 2. The stability constant for Fe(III)-MC-LR (Complex 2) was estimated to be approximately 10(13) in 60% v/v MeOH/water at 0.1 M ionic strength. The electrochemical experiments provide no evidence for the formation of a complex between Fe(2+) and MC-LR. Given that most MC-LR is released only upon cell lysis, and coupled with the moderate strength of the stability constant with Fe(III) determined in this study, it appears unlikely that that MC-LR is an extracellular siderophore. If MC-LR is involved in iron regulation in cyanobacteria, it is more likely as a shuttle for iron across the cell membrane or in intracellular processes.
Insights
Microcystins (MCs) are cyanobacterial toxins. Research suggests MC-LR binds moderately to Fe(III), making it unlikely as an extracellular siderophore, but possibly involved in intracellular iron transport.
Area of Science:
- Environmental Science
- Biochemistry
- Toxicology
Background:
- Microcystins (MCs) are cyanobacterial hepatotoxins with undetermined functions.
- A proposed role for MCs is as siderophores, high-affinity iron-binding ligands.
Purpose of the Study:
- To investigate the proton and iron binding properties of microcystin-LR (MC-LR).
- To assess the potential of MC-LR as a siderophore.
Main Methods:
- UV-visible spectroscopy to determine acid dissociation constants (pKa).
- HPLC peak retention time method.
- Cyclic voltammetry to study iron complexation with MC-LR.
Main Results:
- MC-LR has two acid dissociation constants: pKa₁ = 2.17 and pKa₂ = 3.96.
- Evidence for two Fe(III)-MC-LR complexes, with a stability constant of approximately 10¹³ for Complex 2.
- No complex formation observed between Fe(II) and MC-LR.
Conclusions:
- The moderate Fe(III) binding stability suggests MC-LR is unlikely to function as an extracellular siderophore.
- MC-LR may play a role in intracellular iron transport or iron shuttling across cell membranes in cyanobacteria.
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