Conditions have been developed for the comproportionation reaction of Cu(2+) and copper metal to prepare aqueous solutions of Cu(+) that are stabilized from disproportionation by MeCN and other Cu(+)-stabilizing ligands. These solutions were then used in ITC measurements to quantify the thermodynamics of formation of a set of Cu(+) complexes (Cu(I)(MeCN)3(+), Cu(I)Me6Trien(+), Cu(I)(BCA)2(3-), Cu(I)(BCS)2(3-)), which have stabilities ranging over 15 orders of magnitude, for their use in binding and calorimetric measurements of Cu(+) interaction with proteins and other biological macromolecules. These complexes were then used to determine the stability and thermodynamics of formation of a 1â:â1 complex of Cu(+) with the biologically important tri-peptide glutathione, GSH. These results identify Me6Trien as an attractive Cu(+)-stabilizing ligand for calorimetric experiments, and suggest that caution should be used with MeCN to stabilize Cu(+) due to its potential for participating in unquantifiable ternary interactions.
Stabilization of Cu(I) for binding and calorimetric measurements in aqueous solution.
阅读:13
作者:Johnson Destinee K, Stevenson Michael J, Almadidy Zayed A, Jenkins Sharon E, Wilcox Dean E, Grossoehme Nicholas E
| 期刊: | Dalton Transactions | 影响因子: | 3.300 |
| 时间: | 2015 | 起止号: | 2015 Oct 7; 44(37):16494-505 |
| doi: | 10.1039/c5dt02689j | ||
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