viewed by Wong (8), and the interaction behavior of immo-In this investigation, employing a highly sensitive microcalorimbilized metal ions in PEG liquid phases and in solid phases eter, we measure the influence of pH value and salt concentration with proteins have been systematically explored in pr
Microcalorimetric Studies of the Interactions of Lysozyme with Immobilized Metal Ions: Effects of Ion, pH Value, and Salt Concentration
โ Scribed by Fu-Yung Lin; Wen-Yih Chen; Lung-Ching Sang
- Publisher
- Elsevier Science
- Year
- 1999
- Tongue
- English
- Weight
- 91 KB
- Volume
- 214
- Category
- Article
- ISSN
- 0021-9797
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โฆ Synopsis
This study extends previous research on the interaction of biomaterials with immobilized Cu(II) by isothermal titration calorimetry (ITC) on Fe(III). The difference of the binding behavior of protein with that of the immobilized metal ions is also discussed. For the immobilized Fe(III), ITC results show that the adsorption enthalpy at a constant pH value decreased as the NaCl concentration increased and also decreased with the pH values at constant NaCl concentrations. The adsorption enthalpy become negative under higher pH values or higher salt concentrations indicating the adsorption process is partly driven by the enthalpy. The enthalpy of lysozyme with Fe(III) is higher than that with Cu(II) implying that the heat required for the dehydration of Cu(II) is lower than for the dehydration of Fe(III) and/or that the heat generated from the formation of the coordination with Cu(II) is higher than with Fe(III). In addition, the comparison of different immobilized metal ions corresponding to the equilibrium binding affinity suggests that the binding force of lysozyme with Cu(II) is higher than with Fe(III). This study presents the chemical differences between the binding affinity and the adsorption enthalpy of lysozyme interacting with the immobilized metal ions. The binding and thermodynamic data presented in this study elucidate the mechanism and process of lysozyme binding with immobilized metal ions. In addition, the thermodynamic characteristic functions provide valuable information enabling a more thorough understanding of protein adsorption at the immobilized metal ion affinity surface.
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ions frequently varies with the topography of the protein In this investigation, we measured the influence of pH value surface and the chemistry and physical conditions of the and salt concentration on the heat of interaction between imidazole interaction conditions. Although mechanisms have been pr
The design, optimization, and scale-up of a chromatographic process using immobilized metal ion affinity chromatography (IMAC) demands a thorough understanding of the fundamental factors governing the various interactions between immobilized metal ions and proteins. The results obtained and reported
## Abstract A novel saltsโ and pHโresponsive copolymer, poly(acrylic acidโ__co__โethyl 1โ(4โchlorophenyl)โ5โacrylaminoโ1,2,3โtriazolโ4โcarboxylate), poly(AAโ__co__โECATC), was prepared by radical polymerization in methanol at room temperature with Lโascorbic acid (Vc) and peroxide hydrogen (H~2~O~2