The primary structure of a human immunoglobulin G2 (IgG2) pFc' fragment. 1978

A G Pardo, and E S Rosenwasser, and B Frangione

Amino acid sequence analysis of the pFc' fragment obtained by pepsin digestion of a human IgG2 myeloma protein PIG Gm (n or 23) negative shows it to consist of 112 residues. It starts at position 334 (gamma1 numbering) and contains eight residues from the Cgamma2 region, and the whole Cgamma3 domain. Comparison with the sequence of gamma1 shows two differences at positions 339 and 397. Each of them can be explained by a single base substitution. This high degree of homology among gamma-chain subclasses suggests a recent diversification.

UI MeSH Term Description Entries
D007074 Immunoglobulin G The major immunoglobulin isotype class in normal human serum. There are several isotype subclasses of IgG, for example, IgG1, IgG2A, and IgG2B. Gamma Globulin, 7S,IgG,IgG Antibody,Allerglobuline,IgG(T),IgG1,IgG2,IgG2A,IgG2B,IgG3,IgG4,Immunoglobulin GT,Polyglobin,7S Gamma Globulin,Antibody, IgG,GT, Immunoglobulin
D007141 Immunoglobulin Fc Fragments Crystallizable fragments composed of the carboxy-terminal halves of both IMMUNOGLOBULIN HEAVY CHAINS linked to each other by disulfide bonds. Fc fragments contain the carboxy-terminal parts of the heavy chain constant regions that are responsible for the effector functions of an immunoglobulin (COMPLEMENT fixation, binding to the cell membrane via FC RECEPTORS, and placental transport). This fragment can be obtained by digestion of immunoglobulins with the proteolytic enzyme PAPAIN. Fc Fragment,Fc Fragments,Fc Immunoglobulin,Fc Immunoglobulins,Ig Fc Fragments,Immunoglobulin Fc Fragment,Immunoglobulins, Fc,Immunoglobulins, Fc Fragment,Fc Fragment Immunoglobulins,Fc Fragment, Immunoglobulin,Fc Fragments, Ig,Fc Fragments, Immunoglobulin,Fragment Immunoglobulins, Fc,Fragment, Fc,Fragments, Ig Fc,Immunoglobulin, Fc
D010455 Peptides Members of the class of compounds composed of AMINO ACIDS joined together by peptide bonds between adjacent amino acids into linear, branched or cyclical structures. OLIGOPEPTIDES are composed of approximately 2-12 amino acids. Polypeptides are composed of approximately 13 or more amino acids. PROTEINS are considered to be larger versions of peptides that can form into complex structures such as ENZYMES and RECEPTORS. Peptide,Polypeptide,Polypeptides
D002850 Chromatography, Gel Chromatography on non-ionic gels without regard to the mechanism of solute discrimination. Chromatography, Exclusion,Chromatography, Gel Permeation,Chromatography, Molecular Sieve,Gel Filtration,Gel Filtration Chromatography,Chromatography, Size Exclusion,Exclusion Chromatography,Gel Chromatography,Gel Permeation Chromatography,Molecular Sieve Chromatography,Chromatography, Gel Filtration,Exclusion Chromatography, Size,Filtration Chromatography, Gel,Filtration, Gel,Sieve Chromatography, Molecular,Size Exclusion Chromatography
D003488 Cyanogen Bromide Cyanogen bromide (CNBr). A compound used in molecular biology to digest some proteins and as a coupling reagent for phosphoroamidate or pyrophosphate internucleotide bonds in DNA duplexes. Bromide, Cyanogen
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000595 Amino Acid Sequence The order of amino acids as they occur in a polypeptide chain. This is referred to as the primary structure of proteins. It is of fundamental importance in determining PROTEIN CONFORMATION. Protein Structure, Primary,Amino Acid Sequences,Sequence, Amino Acid,Sequences, Amino Acid,Primary Protein Structure,Primary Protein Structures,Protein Structures, Primary,Structure, Primary Protein,Structures, Primary Protein
D014357 Trypsin A serine endopeptidase that is formed from TRYPSINOGEN in the pancreas. It is converted into its active form by ENTEROPEPTIDASE in the small intestine. It catalyzes hydrolysis of the carboxyl group of either arginine or lysine. EC 3.4.21.4. Tripcellim,Trypure,beta-Trypsin,beta Trypsin

Related Publications

A G Pardo, and E S Rosenwasser, and B Frangione
August 1977, Journal of immunology (Baltimore, Md. : 1950),
A G Pardo, and E S Rosenwasser, and B Frangione
February 2011, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America,
A G Pardo, and E S Rosenwasser, and B Frangione
November 2004, Structure (London, England : 1993),
A G Pardo, and E S Rosenwasser, and B Frangione
November 1979, Molecular immunology,
A G Pardo, and E S Rosenwasser, and B Frangione
March 2007, Infection and immunity,
A G Pardo, and E S Rosenwasser, and B Frangione
March 2000, Infection and immunity,
A G Pardo, and E S Rosenwasser, and B Frangione
September 1980, Journal of immunology (Baltimore, Md. : 1950),
A G Pardo, and E S Rosenwasser, and B Frangione
April 1974, Journal of immunology (Baltimore, Md. : 1950),
A G Pardo, and E S Rosenwasser, and B Frangione
September 1992, Molecular immunology,
A G Pardo, and E S Rosenwasser, and B Frangione
February 1991, The Journal of biological chemistry,
Copied contents to your clipboard!