Aspects of the demetalation and remetalation of ceruloplasmin |
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Authors: | Frank K. Klemens John C. Severns Ramasamy Tamilarasan David R. McMillin |
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Affiliation: | Department of Chemistry, Purdue University, West Lafayette, IN 47907-1393, USA |
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Abstract: | This study dealt with the demetalation and remetalation chemistry of the copper-containing protein ceruloplasmin. For the enzyme from human plasma, dialysis against cyanide at 4°C readily removed copper. Although the apoprotein took up copper(I) at the same temperature, the characteristic blue color of the native protein did not return to any significant extent. However, excellent reconstitution occurred when we added copper(I) at room temperature. With porcine ceruloplasmin, it was more practical to carry out the copper removal step at room temperature, but the reconstitution went smoothly at 4°C. With either source of ceruloplasmin, the binding of the six essential copper ions was generally a highly cooperative process, but the results were different when we combined the apoprotein with Hg(II). After the protein took up 2 mercury ions, it would take up only 1–2 more metal ions even after exposure to a large excess of copper(I). In order to accomodate the various experimental results, we have proposed that a reversible conformational change must occur during the demetalation and remetalation processes. During the remetalation process, it is therefore important that metal uptake occurs in the proper sequence. |
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Keywords: | Ceruloplasmin Copper protein Copper uptake Metal-dependent protein conformation Demetalation Remetalation |
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