Effect of Cadmium on Purified Hepatic Flavokinase: Involvement of Reactive -SH Group(s) in the Inactivation of Flavokinase by Cadmium
Overview
Biology
Physiology
Authors
Affiliations
The effect of cadmium (Cd2+) was studied in vitro on the flavokinase (ATP : riboflavin 5'-phosphotransferase, EC 2.7.1.26) activity purified from rat liver. Cadmium inhibited flavokinase activity in a concentration-dependent manner and the effect was completely reversed by increasing concentration of zinc (Zn2+), indicating a competition between Zn2+ and Cd2+ for binding with the enzyme. Further, a competition between riboflavin and Cd2+ hints at the possibility that Zn2+ and Cd2+ probably compete for the same site on the enzyme where riboflavin binds. Our studies further reveal that hepatic flavokinase contains essential, accessible and functional thiol group(s) as evidenced by a concentration-dependent inhibition by sulfhydryl reagents and protection by thiol protectors like glutathione or dithiothreitol. Furthermore, the enzyme could also be protected from the inhibitory effect of Cd2+ and Hg2+ by glutathione and dithiothreitol suggesting that Cd2+ probably interacts with reactive thiol group at or near the active site of the enzyme to cause inhibition.
Modeling physiological processes that relate toxicant exposure and bacterial population dynamics.
Klanjscek T, Nisbet R, Priester J, Holden P PLoS One. 2012; 7(2):e26955.
PMID: 22328915 PMC: 3273461. DOI: 10.1371/journal.pone.0026955.
Identification and characterization of an archaeon-specific riboflavin kinase.
Mashhadi Z, Zhang H, Xu H, White R J Bacteriol. 2008; 190(7):2615-8.
PMID: 18245297 PMC: 2293203. DOI: 10.1128/JB.01900-07.
Pribyl P, Cepak V, Zachleder V Protoplasma. 2005; 226(3-4):231-40.
PMID: 16333580 DOI: 10.1007/s00709-005-0123-5.
Banjerdkij P, Vattanaviboon P, Mongkolsuk S Appl Environ Microbiol. 2005; 71(4):1843-9.
PMID: 15812010 PMC: 1082542. DOI: 10.1128/AEM.71.4.1843-1849.2005.