Target Mechanisms of the Cyanotoxin Cylindrospermopsin in Immortalized Human Airway Epithelial Cells
Sabine Ziesemer1, Susann Meyer2, Julia Edelmann1
1Animal Physiology and Biochemistry, University of Greifswald, Felix Hausdorff-Strasse 1, D-17489 Greifswald, Germany.
Abstract:
Cylindrospermopsin (CYN) is a cyanobacterial toxin that occurs in aquatic environments worldwide. It is known for its delayed effects in animals and humans such as inhibition of protein synthesis or genotoxicity. The molecular targets and the cell physiological mechanisms of CYN, however, are not well studied. As inhalation of CYN-containing aerosols has been identified as a relevant route of CYN uptake, we analyzed the effects of CYN on protein expression in cultures of immortalized human bronchial epithelial cells (16HBE14o-) using a proteomic approach. Proteins whose expression levels were affected by CYN belonged to several functional clusters, mainly regulation of protein stability, cellular adhesion and integration in the extracellular matrix, cell proliferation, cell cycle regulation, and completion of cytokinesis. With a few exceptions of upregulated proteins (e.g., ITI inhibitor of serine endopeptidases and mRNA stabilizer PABPC1), CYN mediated the downregulation of many proteins. Among these, centrosomal protein 55 (CEP55) and osteonectin (SPARC) were significantly reduced in their abundance. Results of the detailed semi-quantitative Western blot analyses of SPARC, claudin-6, and CEP55 supported the findings from the proteomic study that epithelial cell adhesion, attenuation of cell proliferation, delayed completion of mitosis, as well as induction of genomic instability are major effects of CYN in eukaryotic cells.
Insights
Cylindrospermopsin (CYN), a cyanobacterial toxin, disrupts protein expression in human lung cells, affecting cell adhesion, proliferation, and mitosis. This study reveals CYN
Area of Science:
- Environmental toxicology
- Cellular and molecular toxicology
- Proteomics
Background:
- Cylindrospermopsin (CYN) is a widespread cyanobacterial toxin with known delayed toxic effects.
- Its molecular targets and cellular mechanisms remain poorly understood.
- Inhalation of CYN-containing aerosols is a relevant exposure route.
Purpose of the Study:
- To investigate the effects of CYN on protein expression in human bronchial epithelial cells.
- To identify molecular targets and cellular pathways affected by CYN exposure.
Main Methods:
- Proteomic analysis of immortalized human bronchial epithelial cells (16HBE14o-) exposed to CYN.
- Semi-quantitative Western blot analysis to validate proteomic findings for specific proteins (SPARC, claudin-6, CEP55).
Main Results:
- CYN exposure significantly altered protein expression, impacting regulation of protein stability, cell adhesion, proliferation, cell cycle, and cytokinesis.
- Downregulation of key proteins including centrosomal protein 55 (CEP55) and osteonectin (SPARC) was observed.
- Western blot confirmed reduced levels of SPARC, claudin-6, and CEP55, supporting effects on cell adhesion and proliferation.
Conclusions:
- CYN exposure in human bronchial epithelial cells leads to impaired cell adhesion, reduced proliferation, delayed mitosis, and genomic instability.
- Proteomic and Western blot analyses provide insights into the cellular mechanisms underlying CYN toxicity.
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