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Cytotoxicity of cysteine S-conjugates: structure-activity relationships
S Vamvakas1, A Köchling, K Berthold
1Institut für Toxikologie, Universität Würzburg, F.R.G.
Abstract:
The cytotoxicity of cysteine S-conjugates was investigated in freshly isolated rat renal proximal tubule cells. The study was designed to determine the contribution of the thiols and of the acylating intermediates formed by cysteine conjugate beta-lyase to the initiation of cytotoxicity. Cell viability was determined by trypan blue exclusion and by lactate dehydrogenase leakage. The S-conjugates S-(1,2,2-trichlorovinyl)-L-cysteine, S-(1,2,3,3,3-pentachloro-prop-1-enyl)-L-cysteine and S-(1,2,3,4,4-pentachlorobuta-1,3-dienyl)-L-cysteine, at a concentration of 0.2 mM, reduced cell viability compared to controls from 85% to less than 50% after 3 h. The alpha-chlorinated enethiols formed from these S-conjugates are transformed to acylating intermediates. The S-conjugate S-(2-chlorovinyl)-L-cysteine forms an enethiol, which cannot transform to an acylating intermediate and did not reduce cell viability at 0.2 mM; at 1 mM, it resulted in a very slight reduction of cell viability after 3 h. S-(pentachlorophenyl)-L-cysteine and S-benzyl-L-cysteine, which form stable thiols after metabolism by beta-lyase, were not cytotoxic at a concentration of 1 mM. The direct acting S-(2-chloroethyl)-L-cysteine (0.2 mM) reduced cell viability after 3 h from 85% to 90% (control) to 40%. The results obtained suggest that reactions of the initial thiol-metabolites with biological macromolecules do not contribute to the induction of cytotoxicity by cysteine S-conjugates and indicate that acylating intermediates formed by cysteine conjugate R-lyase induce cytotoxic effects by non-selective acylation of cellular macromolecules.
Insights
Cysteine S-conjugate cytotoxicity in rat kidney cells is primarily caused by acylating intermediates, not initial thiols. These intermediates non-selectively acylate cellular macromolecules, leading to cell death.
Area of Science:
- Toxicology
- Biochemistry
- Cell Biology
Background:
- Cysteine S-conjugates are metabolites with potential toxicity.
- The specific mechanisms driving their cytotoxicity, particularly the role of thiols and acylating intermediates, require elucidation.
Purpose of the Study:
- To investigate the cytotoxic mechanisms of cysteine S-conjugates in rat renal proximal tubule cells.
- To differentiate the contributions of thiol metabolites versus acylating intermediates to cytotoxicity.
Main Methods:
- Primary rat renal proximal tubule cells were utilized.
- Cell viability was assessed using trypan blue exclusion and lactate dehydrogenase leakage assays.
- Various cysteine S-conjugates with differing metabolic fates were tested.
Main Results:
- S-conjugates forming acylating intermediates significantly reduced cell viability.
- S-(2-chlorovinyl)-L-cysteine, which does not form acylating intermediates, showed minimal cytotoxicity.
- Stable thiols or non-acylating metabolites did not induce significant cytotoxicity.
Conclusions:
- Acylating intermediates, not initial thiol metabolites, are the primary drivers of cysteine S-conjugate cytotoxicity.
- Cytotoxicity is induced by the non-selective acylation of cellular macromolecules by these intermediates.