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Effects of organotin compounds on mitosis, spindle structure, toxicity and in vitro microtubule assembly
K G Jensen1, A Onfelt, M Wallin
1Department of Environmental Medicine, Odense University, Denmark.
Abstract:
Di- and tri-methyl, -butyl and phenyl tin, all as chlorides were tested for toxicity and spindle disturbances in V79 Chinese hamster cells and for effects on in vitro assembly of bovine brain tubulin. The V79 cells were treated for 30 min and in general, loss of a stainable spindle could be demonstrated at slightly higher concentrations than c-mitosis. Both these effects were observed at low, non-toxic concentrations. The c-mitotic activity of the compounds was found to increase with increasing lipophilicity and it was best described by a regression on both lipophilicity (partition coefficient octanol/water) and loss of spindle stain. All compounds showed a concentration dependent inhibition of microtubule assembly and all but diphenyltin induced disassembly of preassembled microtubules. An effect on the rate of polymerization was suggested for tributyl- and triphenyltin. The results further indicate that the inhibition of microtubule assembly is through direct interaction with tubulin but does not involve the sulfhydryls of the protein. Thus, the organotins seem to act through two different cooperative mechanisms, inhibition of microtubule assembly and interaction with hydrophobic sites. The latter mechanism might involve Cl-/OH- exchange across cellular membranes. Previous studies have demonstrated chromosomal supercontraction and aneuploidy in human lymphocytes exposed to low concentrations of organotin in vitro and it is suggested that exposure to these compounds may increase the risk of aneuploidy in humans.
Insights
Organotin chlorides disrupt cell division by interfering with microtubule assembly and spindle formation at low, non-toxic concentrations. These compounds may increase the risk of aneuploidy in humans.
Area of Science:
- Toxicology
- Cell Biology
- Biochemistry
Background:
- Organotin compounds are known environmental contaminants.
- Their toxicological effects, particularly on cell division, require further elucidation.
Purpose of the Study:
- To investigate the toxicity and spindle disturbances of various organotin chlorides in V79 Chinese hamster cells.
- To assess the effects of these compounds on in vitro microtubule assembly using bovine brain tubulin.
Main Methods:
- Treatment of V79 cells with organotin chlorides.
- Assessment of c-mitosis and spindle abnormalities.
- In vitro microtubule assembly and disassembly assays.
- Correlation of effects with lipophilicity (partition coefficient octanol/water).
Main Results:
- Organotins induced c-mitosis and spindle disturbances at low, non-toxic concentrations.
- Activity correlated with lipophilicity and spindle stain loss.
- Concentration-dependent inhibition of microtubule assembly and disassembly of preassembled microtubules observed.
- Inhibition likely involves direct tubulin interaction, not sulfhydryls, possibly via hydrophobic interactions.
Conclusions:
- Organotins exhibit dual mechanisms: microtubule assembly inhibition and hydrophobic interactions.
- Potential for Cl-/OH- exchange across cellular membranes.
- Exposure may increase the risk of aneuploidy in humans, warranting further investigation.