Abstract
Irreversible bindings of m-diamminedichloroplatinum(II) (cis-DDP) to human serum albumin (HSA) were investigated in a pH 7.4 buffer containing 0.1m NaCl at various molar ratios (civ-DDP/HSA) up to 60 over a 14 d period (37 °C). The metal binding seemed to reach a plateau when incubated at less than 10 times excess of cw-DDP. As the molar ratio increased, the reaction rate was relatively fast within the first day, followed by a moderate increase in the metal binding. When incubated at 60 times excess of cis-DDP the metal bound as much as 20 mol per mol of HSA in 14 d. Fluorescence quenching of the metal-bound protein suggested that the tryptophan residue was gradually exposed to a hydrophilic environment as the metal binding increased. Furthermore, cis-DDP cleaved disulfide bonds at the ratio of 1 mol of disulfide bond per 5.3 mol of the metal binding. It was therefore suggested that the metal binding also occurred at several sites other than the disulfide bond. Warfarin binding to the metal-bound protein, examined by fluorescence changes, also decreased with increasing metal binding or cleavage of the disulfide bonds. Thus, cis-DDP bound to multiple sites in addition to the lone sulfhydryl group (Cys-34), suggesting that massive conformational changes of the protein took place. © 1991, The Pharmaceutical Society of Japan. All rights reserved.
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Yotsuyanagi, T., Ohta, N., Futo, T., Ito, S., Chen, D., & Ikeda, K. (1991). Multiple and Irreversible Binding of cis-Diamminedichloroplatinum(II) to Human Serum Albumin and Its Effect on Warfarin Binding. Chemical and Pharmaceutical Bulletin, 39(11), 3003–3006. https://doi.org/10.1248/cpb.39.3003
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