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J Korcáková

Publications and source records attributed to J Korcáková.

13 recordsLinked to original sources

Conformational transitions of human alpha-1 fetoprotein and serum albumin at acid and alkaline pH.

Conformational transitions of HAFP in the pH-range 2-12 were studied by fluorescence spectroscopy, fluorescence polarization measurements, circular dichroism and hydrophobic chromatography in order to compare molecular architecture of HAFP and that of human serum albumin. It was found that HAFP has a remarkably hydrophilic exposed molecular surface at neutral pH and possesses extensive hydrophobic binding sites located in crevices. Conformational changes occur in HAFP in the acid and alkaline pH regions; extensive hydrophobic areas in HAFP are exposed by both acid and alkaline transitions. The alpha-helix contents of HAFP were determined as 67% at pH 7.6, 47% at pH 2.11.

Circular Dichroism↗

Fluorescence spectroscopy, fluorescence polarization, and circular dichroism in studies on pH-dependent changes in the alpha-fetoprotein molecule.

Conformational transitions of human alpha-fetoprotein (AFP) in the pH range from 2 to 12 were studied by fluorescence spectroscopy, fluorescence polarization, and circular dichroism in order to compare the molecular architecture of AFP with that of human serum albumin (HSA). In a previous paper we have found that AFP has a remarkably hydrophilic exposed molecular surface at neutral pH and possesses extensive hydrophobic binding sites located in crevices. Conformational changes of AFP occur in the acid and alkaline pH regions; extensive, hydrophobic areas of AFP are exposed by both acid and alkaline transitions. Similar results were obtained using optical methods. Both fluorescence and CD measurements disclosed conformational transitions of AFP induced by acidic or alkaline pH. Changes of the fluorescence intensity of AFP and HSA were compared with the model substances, that is, with lysozyme and Gly-Trp dipeptide. Again AFP and HSA show similar features, especially at the neutral pH and during alkaline transition. In the acid pH region, decrease of the AFP emission fluorescence intensity was greater than that of HSA and evidence for some irreversible conformational changes of AFP was obtained. CD spectra of both proteins also show a very similar pattern. The changes of molar ellipticity with pH for HSA are very much like those found for AFP. We have estimated high alpha-helix content--67% at pH 7.6 and 47% at pH 2.11. These figures are very close to those given for bovine albumin and rat alpha-fetoprotein. These findings provide additional support for our former findings that the molecular architecture of human alpha-fetoprotein has features similar to those of human serum albumin.

Circular Dichroism↗

A spectroscopic study of the hemin-human-alpha-fetoprotein system.

The binding of hemin to human alpha-fetoprotein has been estimated by means of fluorescence and spectrophotometric titration. Spectrophotometric titration discloses one strong binding site for hemin with an association constant of 1.5 X 10(7) M-1. The binding causes a shift of the absorption maximum to a higher wavelength and a rise in the molar absorption coefficient. Fluorescence reveals that the binding of hemin to human AFP quenches the protein fluorescence, which changes in character from a tryptophan type to a tyrosine type. As postulated by our results, the binding of hemin to human AFP is similar to the binding of hemin to HSA.

Female↗

Similarity of hydrophobic properties of alpha-fetoprotein and albumin.

Human alpha-fetoprotein (AFP) and serum albumin (HSA) were studied by hydrophobic interaction chromatography. A close resemblance was observed both in the native state and after various perturbations (pH, salt and alcohol) indicating a significant similarity in their molecular structures. Both proteins displayed similar hydrophobic properties which apparently were different from those of other globular proteins. In agreement with the domain structure proposed by Brown (1976), our results indicated that surface nonpolar side chains of both the native HSA and AFP produced large hydrophobic areas located solely in crevices.

Humans↗