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Updated: Aug 16, 2026

A Mass Spectrometry-Based Approach to Identify Phosphoprotein Phosphatases and their Interactors
Published on: April 29, 2022
High crustacean toxicity of microcystin congeners does not correlate with high protein phosphatase inhibitory
Judith F Blom1, Friedrich Jüttner
1Limnological Station, Institute of Plant Biology, University of Zürich, Seestr. 187, 8802 Kilchberg, Switzerland. blom@limnol.unizh.ch
Abstract:
Microcystins are strong toxins and efficient inhibitors of eukaryotic protein phosphatases. To determine structure related properties of six different microcystin congeners, we applied standardized inhibition assays for the protein phosphatases 1 and 2A, and an acute toxicity assay with Thamnocephalus platyurus. Protein phosphatase inhibition and acute toxicity did not correlate with each other. While the inhibition of the protein phosphatases 1 and 2A was much weaker for [D-Asp3,(E)-Dhb7]microcystin-RR than for the other congeners, the toxicity was one of the highest. [D-Asp3]microcystin-LR exhibited only small differences to microcystin-LR. The data show that mechanisms other than the inhibition of protein phosphatases, such as uptake, transport, detoxification or other target sites may have a strong modulating effect on the toxicity of a microcystin congener for a particular animal. Structural changes can offset or even reverse the specific toxicity of microcystin congeners.
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