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Purification of IgG Using Protein A or Protein G

Mark Page, Robin Thorpe

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Abstract

Some strains of Staphylococcus aureus synthesize protein A, a group-specific ligand that binds to the Fc region of IgG from many species ( 1 , 2 ). Protein A does not bind all subclasses of IgG, e.g., human IgG 3 , mouse IgG 3 , sheep IgG 1 , and some subclasses bind only weakly, e.g., mouse IgG 1 . For some species, IgG does not bind to protein A at all, e.g., rat, chicken, goat, and some MAbs show abnormal affinity for the protein. These properties make the use of protein A for IgG purification limited in certain cases, although it can be used to an advantage in separating IgG subclasses from mouse serum ( 3 ). Protein G (derived from groups C and G Streptococci ) also binds to IgG Fc with some differences in species specificity from protein A. Protein G binds to IgG of most species, including rat and goat, and recognizes most subclasses (including human IgG 3 and mouse IgG 1 ), but has a lower binding capacity. Protein G also has a high affinity for albumin, although recombinant DNA forms now exist in which the albumin-binding site has been spliced out, and are therefore very useful for affinity chromatography. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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What this paper is about

Some strains of Staphylococcus aureus synthesize protein A, a group-specific ligand that binds to the Fc region of IgG from many species ( 1 , 2 ). Protein A does not bind all subclasses of IgG, e.g., human IgG 3 , mouse IgG 3 , sheep IgG 1 , and some subclasses bind only weakly, e.g., mouse IgG 1 . For some species, IgG does not bind to protein A at all, e.g., rat, chicken, goat, and some MAbs show abnormal affinity for the protein. These properties make the use of protein A for IgG purification limited in certain cases, although it can be used to an advantage in separating IgG subclasses from mouse serum ( 3 ). Protein G (derived from groups C and G Streptococci ) also binds to IgG Fc with some differences in species specificity from protein A. Protein G binds to IgG of most species, including rat and goat, and recognizes most subclasses (including human IgG 3 and mouse IgG 1 ), but has a lower binding capacity. Protein G also has a high affinity for albumin, although recombinant DNA forms now exist in which the albumin-binding site has been spliced out, and are therefore very useful for affinity chromatography. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Available abstract

Some strains of Staphylococcus aureus synthesize protein A, a group-specific ligand that binds to the Fc region of IgG from many species ( 1 , 2 ). Protein A does not bind all subclasses of IgG, e.g., human IgG 3 , mouse IgG 3 , sheep IgG 1 , and some subclasses bind only weakly, e.g., mouse IgG 1 . For some species, IgG does not bind to protein A at all, e.g., rat, chicken, goat, and some MAbs show abnormal affinity for the protein. These properties make the use of protein A for IgG purification limited in certain cases, although it can be used to an advantage in separating IgG subclasses from mouse serum ( 3 ). Protein G (derived from groups C and G Streptococci ) also binds to IgG Fc with some differences in species specificity from protein A. Protein G binds to IgG of most species, including rat and goat, and recognizes most subclasses (including human IgG 3 and mouse IgG 1 ), but has a lower binding capacity. Protein G also has a high affinity for albumin, although recombinant DNA forms now exist in which the albumin-binding site has been spliced out, and are therefore very useful for affinity chromatography. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

Key concepts: Protein A/G, Protein G, Protein A, Affinity chromatography, Immunoglobulin G, Fragment crystallizable region, Molecular biology, Biology

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