BACKGROUND: Binding of proteins in ion exchange chromatography is dominated by electrostatic interactions and can be tuned by adjusting pH and ionic strength of the solvent. Therefore, the isoelectric region (IER), the pH region of almost zero charge near the pI, has been used to predict the binding properties of proteins. PRINCIPAL FINDINGS: Usually the IER is small and binding and elution is carried out at pH values near to the pI. However, some proteins with an extended IER have been shown to bind and elute far away from its pI. To analyze factors that mediate the size of the IER and to identify proteins with an extended IER, two protein families consisting of more than 7000 proteins were systematically investigated. Most proteins were f...
Ionized groups carry net charge and thus play a major role in the electrostatic interactions between...
Ion-exchange chromatography separates proteins by charge primarily through electrostatic interaction...
Isoelectric focusing in immobilized pH gradients (IEF-IPG) was used to analyze three different recom...
Binding of proteins in ion exchange chromatography is dominated by electrostatic interactions and ca...
In the present study, protein isoelectric point (pI), molecular weight (MW) and partitioning coeffic...
Proteins often do not migrate as expected in two dimensional electrophoresis based on their primary ...
Driven by the prevalent use of ion exchange chromatography (IEC) for polishing therapeutic proteins,...
This work demonstrates that a highly linear, controllable and wide-ranged pH-gradient can be generat...
Although the distribution of protein isoelectric points is multi-modal, large proteins show isoelect...
Motivation: In any macromolecular polyprotic system - for example protein, DNA or RNA - the isoelect...
Theoretical considerations indicate the possibility of producing focusing effects in the ion-exchang...
Theoretical considerations indicate the possibility of producing focusing effects in the ion-exchang...
Isoelectric chromatofocusing (ICF), a mode of chromatography by which proteins are separated based o...
Separation of amino acids, peptides, and proteins (bioanalytes) via ion exchange (IE) has widespread...
Ionized groups carry net charge and thus play a major role in the electrostatic interactions between...
Ion-exchange chromatography separates proteins by charge primarily through electrostatic interaction...
Isoelectric focusing in immobilized pH gradients (IEF-IPG) was used to analyze three different recom...
Binding of proteins in ion exchange chromatography is dominated by electrostatic interactions and ca...
In the present study, protein isoelectric point (pI), molecular weight (MW) and partitioning coeffic...
Proteins often do not migrate as expected in two dimensional electrophoresis based on their primary ...
Driven by the prevalent use of ion exchange chromatography (IEC) for polishing therapeutic proteins,...
This work demonstrates that a highly linear, controllable and wide-ranged pH-gradient can be generat...
Although the distribution of protein isoelectric points is multi-modal, large proteins show isoelect...
Motivation: In any macromolecular polyprotic system - for example protein, DNA or RNA - the isoelect...
Theoretical considerations indicate the possibility of producing focusing effects in the ion-exchang...
Theoretical considerations indicate the possibility of producing focusing effects in the ion-exchang...
Isoelectric chromatofocusing (ICF), a mode of chromatography by which proteins are separated based o...
Separation of amino acids, peptides, and proteins (bioanalytes) via ion exchange (IE) has widespread...
Ionized groups carry net charge and thus play a major role in the electrostatic interactions between...
Ion-exchange chromatography separates proteins by charge primarily through electrostatic interaction...
Isoelectric focusing in immobilized pH gradients (IEF-IPG) was used to analyze three different recom...