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The thermodynamics of the interactions of serum apotransferrin (T) and holotransferrin (TFe(2)) with ceruloplasmin (Cp), as well as those of human lactoferrin (Lf), were assessed by fluorescence emission spectroscopy. Cp interacts with two Lf molecules. The first interaction depends on pH and μ, whereas the second does not. Dissociation constants were as follows: K(11Lf) = 1.5 ± 0.2 μM, and K(12Lf) = 11 ± 2 μM. Two slightly different interactions of T or TFe(2) with Cp are detected for the first time. They are both independent of pH and μ and occur with 1:1 stoichiometry: K(1T) = 19 ± 7 μM, and K(1TFe2) = 12 ± 4 μM. These results can improve our understanding of the probable process of the transfer of iron from Cp to T in iron and copper transport and homeostasis. 相似文献
64.
Mary Anne Nelson Annette MoserDavid S. Hage 《Journal of chromatography. B, Analytical technologies in the biomedical and life sciences》2010,878(2):165-171
A system based on high-performance affinity chromatography was developed for characterizing the binding, elution and regeneration kinetics of immobilized antibodies and immunoaffinity supports. This information was provided by using a combination of frontal analysis, split-peak analysis and peak decay analysis to determine the rate constants for antibody–antigen interactions under typical sample application and elution conditions. This technique was tested using immunoaffinity supports that contained monoclonal antibodies for 2,4-dichlorophenoxyacetic acid (2,4-D). Association equilibrium constants measured by frontal analysis for 2,4-D and related compounds with the immobilized antibodies were 1.7–12 × 106 M−1 at pH 7.0 and 25 °C. Split-peak analysis gave association rate constants of 1.4–12 × 105 M−1 s−1 and calculated dissociation rate constants of 0.01–0.4 s−1 under the application conditions. Elution at pH 2.5 for the analytes from the antibodies was examined by peak decay analysis and gave dissociation rate constants of 0.056–0.17 s−1. A comparison of frontal analysis results after various periods of column regeneration allowed the rate of antibody regeneration to be examined, with the results giving a first-order regeneration rate constant of 2.4 × 10−4 s−1. This combined approach and the information it provides should be useful in the design and optimization of immunoaffinity chromatography and other analytical methods that employ immobilized antibodies. The methods described are not limited to the particular analytes and antibodies employed in this study but should be useful in characterizing other targets, ligands and supports. 相似文献
65.
K.S. Joseph Jeanethe AnguizolaAbby J. Jackson David S. Hage 《Journal of chromatography. B, Analytical technologies in the biomedical and life sciences》2010,878(28):2775-2781
Acetohexamide is a drug used to treat type II diabetes and is tightly bound to the protein human serum albumin (HSA) in the circulation. It has been proposed that the binding of some drugs with HSA can be affected by the non-enzymatic glycation of this protein. This study used high-performance affinity chromatography to examine the changes in acetohexamide–HSA binding that take place as the glycation of HSA is increased. It was found in frontal analysis experiments that the binding of acetohexamide to glycated HSA could be described by a two-site model involving both strong and weak affinity interactions. The average association equilibrium constant (Ka) for the high affinity interactions was in the range of 1.2–2.0 × 105 M−1 and increased in moving from normal HSA to HSA with glycation levels that might be found in advanced diabetes. It was found through competition studies that acetohexamide was binding at both Sudlow sites I and II on the glycated HSA. The Ka for acetohexamide at Sudlow site I increased by 40% in going from normal HSA to minimally glycated HSA but then decreased back to near-normal values in going to more highly glycated HSA. At Sudlow site II, the Ka for acetohexamide first decreased by about 40% and then increased in going from normal HSA to minimally glycated HSA and more highly glycated HSA. This information demonstrates the importance of conducting both frontal analysis and site-specific binding studies in examining the effects of glycation on the interactions of a drug with HSA. 相似文献
66.
Solarewicz Joanna Manly Amanda Kokoszka Stephanie Sleiman Naama Leff Todd Cala Steven 《Molecular and cellular biochemistry》2019,457(1-2):201-214
Molecular and Cellular Biochemistry - Adiponectin (ADN) is an abundant protein in serum, secreted by adipocytes, that acts as a signal for fat metabolism. It is marked by a complex molecular... 相似文献
67.
A new method for the immobilization of α1-acid glycoprotein (AGP) in high-performance liquid chromatography (HPLC) columns was recently described for applications such as drug binding studies. Part of this earlier work used self-competition zonal elution studies to measure association equilibrium constants between immobilized AGP and R- or S-propranolol. It was later found that analysis of these data by a common equation derived for linear elution conditions gave erroneous values for experiments actually conducted under nonlinear conditions. This report discusses the nature of this error and uses frontal analysis to estimate the true binding strength between R- and S-propranolol and HPLC columns containing immobilized AGP. 相似文献
68.
Crystal structure of the interleukin-4/receptor alpha chain complex reveals a mosaic binding interface 总被引:6,自引:0,他引:6
Interleukin-4 (IL-4) is a principal regulatory cytokine during an immune response and a crucial determinant for allergy and asthma. IL-4 binds with high affinity and specificity to the ectodomain of the IL-4 receptor alpha chain (IL4-BP). Subsequently, this intermediate complex recruits the common gamma chain (gamma c), thereby initiating transmembrane signaling. The crystal structure of the intermediate complex between human IL-4 and IL4-BP was determined at 2.3 A resolution. It reveals a novel spatial orientation of the two proteins, a small but unexpected conformational change in the receptor-bound IL-4, and an interface with three separate clusters of trans-interacting residues. Novel insights on ligand binding in the cytokine receptor family and a paradigm for receptors of IL-2, IL-7, IL-9, and IL-15, which all utilize gamma c, are provided. 相似文献
69.
Klein S Hage JJ van der Horst CM Lagerweij M 《Plastic and reconstructive surgery》2003,111(2):735-743
Peripheral arterial occlusive disease or congenital anomalies of the major crural arteries may limit the use of the fibula free flap and should be detected preoperatively. Conventional selective angiography is the definitive standard imaging method for making this diagnosis, but it has drawbacks. A safer, cheaper, more accurate, and noninvasive alternative is desirable. The authors sought to test the hypothesis that the ankle-arm index of each of the three crural arteries, combined with pencil Doppler examination of the peroneal skin perforators, would provide adequate information to restrict the use of angiography to cases in which the outcomes of either or both of these options are insufficient. The ankle-arm index data of each of the three crural arteries, as well as pencil Doppler examination of the peroneal skin perforators of both legs of nine prospectively included patients and the nonoperated legs of 13 retrospectively included patients, were compared statistically in four different ways with the preoperative angiographic findings. A combined ankle-arm index and pencil Doppler examination is not accurate enough to detect legs or arteries with subclinical peripheral arterial occlusive disease or vascular variation and, hence, is not a sufficient basis on which to develop the surgical plan for a fibula free flap. 相似文献
70.
High-performance affinity chromatography: a powerful tool for studying serum protein binding 总被引:1,自引:0,他引:1
Hage DS 《Journal of chromatography. B, Analytical technologies in the biomedical and life sciences》2002,768(1):3-30
High-performance affinity chromatography (HPAC) is a method in which a biologically-related ligand is used as a stationary phase in an HPLC system. This approach is a powerful means for selectively isolating or quantitating agents in complex samples, but it can also be employed to study the interactions of biological systems. In recent years there have been numerous reports in which HPAC has been used to examine the interactions of drugs, hormones and other substances with serum proteins. This review discusses how HPAC has been used in such work. Particular attention is given to the techniques of zonal elution and frontal analysis. Various applications are provided for these techniques, along with a list of factors that need to be considered in their optimization and use. New approaches based on band-broadening studies and rapid immunoextraction are also discussed. 相似文献