Comparison of styrene-7,8-oxide adducts formed via reaction with cysteine, N-terminal valine and carboxylic acid residues in human, mouse and rat hemoglobin. 1997

K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
Department of Environmental Sciences and Engineering, School of Public Health, University of North Carolina, Chapel Hill 27599-7400, USA.

The reactive metabolite of styrene, styrene-7,8-oxide (SO), reacts with a variety of nucleophilic sites in hemoglobin (Hb) to form SO-Hb adducts. Following the in vitro incubation of SO with blood from humans, NMRI mice and Sprague-Dawley rats, the second-order reaction rate constants were determined for the reaction of SO with cysteine (through both the alpha- and beta-carbons of SO), N-terminal valine (through the beta-carbon of SO), and carboxylic acid (presumably through both the alpha- and beta-carbons of SO) residues in Hb. The rate constants for cysteine adducts vary dramatically between species [2.04, 10.7, 133 L (mol Hb)-1 h-1 (alpha binding) for humans, mice and rats, respectively] and [0.078, 2.16, 20.4 L (mol Hb)-1 h-1 (beta binding), respectively]. The considerably higher rate of reaction with cysteine in rat Hb probably reflects the presence of an additional cysteine residue at position beta 125. Although the rate constants for valine adducts (1.82, 0.80, 0.29 L (mol Hb)-1 h-1, respectively) and COOH adducts (3.55, 1.94, 2.37 L (mol Hb)-1 h-1, respectively) are much more consistent, the inter-species differences are statistically significant for the reaction of SO with the N-terminal valine of Hb. Following the i.p. administration of styrene to mice and styrene and SO to rats, the levels of adducts at each of these sites were used in conjunction with the calculated rate constants to predict the integrated blood doses of SO. While the SO doses predicted from cysteine and valine adducts were very similar, that based upon COOH-binding was significantly different, presumably due to the instability of SO-COOH adducts. This research affirms the use of both cysteine and valine adducts, but not carboxylic acid adducts, as biomarkers of exposure to styrene and SO.

UI MeSH Term Description Entries
D008297 Male Males
D008815 Mice, Inbred Strains Genetically identical individuals developed from brother and sister matings which have been carried out for twenty or more generations, or by parent x offspring matings carried out with certain restrictions. All animals within an inbred strain trace back to a common ancestor in the twentieth generation. Inbred Mouse Strains,Inbred Strain of Mice,Inbred Strain of Mouse,Inbred Strains of Mice,Mouse, Inbred Strain,Inbred Mouse Strain,Mouse Inbred Strain,Mouse Inbred Strains,Mouse Strain, Inbred,Mouse Strains, Inbred,Strain, Inbred Mouse,Strains, Inbred Mouse
D002264 Carboxylic Acids Organic compounds containing the carboxy group (-COOH). This group of compounds includes amino acids and fatty acids. Carboxylic acids can be saturated, unsaturated, or aromatic. Carboxylic Acid,Acid, Carboxylic,Acids, Carboxylic
D003545 Cysteine A thiol-containing non-essential amino acid that is oxidized to form CYSTINE. Cysteine Hydrochloride,Half-Cystine,L-Cysteine,Zinc Cysteinate,Half Cystine,L Cysteine
D004852 Epoxy Compounds Organic compounds that include a cyclic ether with three ring atoms in their structure. They are commonly used as precursors for POLYMERS such as EPOXY RESINS. Epoxide,Epoxides,Epoxy Compound,Oxiranes,Compound, Epoxy,Compounds, Epoxy
D006454 Hemoglobins The oxygen-carrying proteins of ERYTHROCYTES. They are found in all vertebrates and some invertebrates. The number of globin subunits in the hemoglobin quaternary structure differs between species. Structures range from monomeric to a variety of multimeric arrangements. Eryhem,Ferrous Hemoglobin,Hemoglobin,Hemoglobin, Ferrous
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001665 Binding Sites The parts of a macromolecule that directly participate in its specific combination with another molecule. Combining Site,Binding Site,Combining Sites,Site, Binding,Site, Combining,Sites, Binding,Sites, Combining
D001711 Biotransformation The chemical alteration of an exogenous substance by or in a biological system. The alteration may inactivate the compound or it may result in the production of an active metabolite of an inactive parent compound. The alterations may be divided into METABOLIC DETOXICATION, PHASE I and METABOLIC DETOXICATION, PHASE II.

Related Publications

K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
March 2008, International journal of hygiene and environmental health,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
November 1997, Journal of chromatography. B, Biomedical sciences and applications,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
January 1994, Methods in enzymology,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
September 1998, Mutation research,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
January 1982, Environmental mutagenesis,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
December 1994, Carcinogenesis,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
September 1999, Toxicology letters,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
January 1991, Advances in experimental medicine and biology,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
October 2010, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences,
K Yeowell-O'Connell, and W Pauwels, and M Severi, and Z Jin, and M R Walker, and S M Rappaport, and H Veulemans
October 1985, Chemico-biological interactions,
Copied contents to your clipboard!