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1.
J Chromatogr B Biomed Sci Appl ; 702(1-2): 41-8, 1997 Nov 21.
Article in English | MEDLINE | ID: mdl-9449554

ABSTRACT

Hydrophobic interaction chromatography (HIC) has been used extensively for the separation of proteins and peptides by elution using a descending salt gradient, with and without the use of detergents or denaturing agents. In this paper we compare different hydrophobic interaction chromatographic media for the separation of multiple forms of hexokinase from rabbit reticulocytes. Among the different hydrophobic chromatographic media tested (Toyopearl Phenyl 650S, Ether 650S and Butyl 650S) Toyopearl Phenyl 650S offered the best separation of multiple forms of hexokinase, probably due to its intermediate hydrophobicity. In order to establish the optimal experimental conditions, we evaluated the effects of different salts, and the results obtained demonstrated that among the antichaotropic salts, ammonium sulphate is the most suitable for the separation of hexokinase sub-types. The sample loading capacity of the three Toyopearl supports was investigated and the recovery of enzymatic activity obtained ranged from 60% to 90%, depending on the different salts and hydrophobic media used. The chromatographic profiles of hexokinase activity from various mammalian and fungal tissues also demonstrate that Toyopearl Phenyl 650S can be successfully employed for the separation of multiple forms of enzymes from different biological sources.


Subject(s)
Chromatography, Liquid/methods , Hexokinase/analysis , Reticulocytes/enzymology , Ammonium Sulfate/chemistry , Animals , Ascomycota/enzymology , Brain/enzymology , Erythrocytes/enzymology , Hexokinase/chemistry , Hexokinase/metabolism , Humans , Hydrogen-Ion Concentration , Placenta/enzymology , Polymers/chemistry , Rabbits , Rats , Sodium Chloride/chemistry , Surface Properties
2.
J Chromatogr A ; 676(1): 51-63, 1994 Jul 29.
Article in English | MEDLINE | ID: mdl-7921181

ABSTRACT

Hydrophobic interaction chromatography (HIC) has been employed extensively in the separation of proteins by elution using a descending salt gradient, with and without the use of detergents or denaturing agents. In this study, a new hydrophobic interaction chromatographic support, Toyopearl Phenyl 650 S, was investigated in order to examine the distribution of multiple forms of rabbit reticulocyte hexokinase type I. These distinct forms of the enzyme, designated hexokinase Ia, Ia* and Ib, show similar kinetic and physical properties, similar molecular masses (ca. 100,000) and a different intracellular distribution. The results obtained using Toyopearl Phenyl 650 S of 20-50-microns particle diameter show that this HIC support allows very high resolution, comparable to that obtainable with HIC-HPLC columns but with the advantage of charging a higher amount of starting material even with a high protein concentration. These characteristics render Toyopearl Phenyl 650 S suitable for analytical and preparative purposes. Further, in the separation of multiple forms of rabbit reticulocyte hexokinase, the HIC method was shown to be superior to RP-HPLC, making possible the efficient separation of proteins with high molecular mass and their recovery in active forms. The Toyopearl Phenyl 650 S column was also shown to be more efficient than the ion-exchange chromatographic media previously used, allowing a quicker analysis of the multiple forms of rabbit reticulocyte hexokinase under different biological conditions.


Subject(s)
Chromatography/methods , Hexokinase/isolation & purification , Reticulocytes/enzymology , Ammonium Sulfate , Animals , Chromatography, High Pressure Liquid , Hexokinase/chemistry , Hexokinase/metabolism , Kinetics , Molecular Weight , Particle Size , Polymers , Rabbits
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