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. 1967 Jan 1;125(1):177–190. doi: 10.1084/jem.125.1.177

STUDIES OF THE Vi (γ2c) SUBGROUP OF γ-GLOBULIN

A RELATIONSHIP BETWEEN CONCENTRATION AND GENETIC TYPE AMONG NORMAL INDIVIDUALS

William J Yount 1, Henry G Kunkel 1, Stephen D Litwin 1
PMCID: PMC2138342  PMID: 4163358

Abstract

Further delineation of the antigens characteristic of the Vi or γ2c subgroup of γ-globulin was carried out utilizing a number of rabbit and primate antisera. Two genetic antigens characteristic of this subgroup, Gm(b) and Gm(g), were also detected by precipitation techniques with certain of the antisera. These were clearly differentiated from antigens common to all proteins of this subgroup. The concentration, of Vi protein in normal and pathological sera from several population groups was measured quantitatively utilizing a variety of immunological procedures. All sera studied showed measurable levels. The mean value for Caucasian sera was 1.06 mg/ml, representing approximately 8% of γG-globulin. This agreed closely with a figure of 8.4% for the incidence of myeloma proteins of the Vi subgroup among all γG-myeloma proteins in Caucasians. A relationship was found between the Vi subgroup concentration and the specific genetic type of a given individual. Measurements of the Gm(b) genetic determinants, which are found solely in Vi-type proteins, brought forward this relationship. Gm(b+) individuals showed higher concentrations of Vi-type γ-globulin than those who were Gm(b-), and this difference was statistically significant for both the homozygous and heterozygous states. It appeared that the structural genes for Gm(b+) polypeptide chains showed a greater synthetic capacity than those for Gm(b-) types. The possible significance of such effects in governing the relative composition of the antibody population in a given individual is discussed.

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Selected References

These references are in PubMed. This may not be the complete list of references from this article.

  1. BLOCH K. J., KOURILSKY F. M., OVARY Z., BENACERRAF B. Properties of guinea pig 7S antibodies. III. Identification of antibodies involved in complement fixation and hemolysis. J Exp Med. 1963 Jun 1;117:965–981. doi: 10.1084/jem.117.6.965. [DOI] [PMC free article] [PubMed] [Google Scholar]
  2. FAHEY J. L., MCKELVEY E. M. QUANTITATIVE DETERMINATION OF SERUM IMMUNOGLOBULINS IN ANTIBODY-AGAR PLATES. J Immunol. 1965 Jan;94:84–90. [PubMed] [Google Scholar]
  3. GREY H. M., KUNKEL H. G. H CHAIN SUBGROUPS OF MYELOMA PROTEINS AND NORMAL 7S GAMMA-GLOBULIN. J Exp Med. 1964 Aug 1;120:253–266. doi: 10.1084/jem.120.2.253. [DOI] [PMC free article] [PubMed] [Google Scholar]
  4. KUNKEL H. G., ALLEN J. C., GREY H. M., MARTENSSON L., GRUBB R. A RELATIONSHIP BETWEEN THE H CHAIN GROUPS OF 7S GAMMA-GLOBULIN AND THE GM SYSTEM. Nature. 1964 Jul 25;203:413–414. doi: 10.1038/203413a0. [DOI] [PubMed] [Google Scholar]
  5. KUNKEL H. G. Zone electrophoresis. Methods Biochem Anal. 1954;1:141–170. doi: 10.1002/9780470110171.ch6. [DOI] [PubMed] [Google Scholar]
  6. Kunkel H. G., Prendergast R. A. Subgroups of gamma-A immune globulins. Proc Soc Exp Biol Med. 1966 Jul;122(3):910–913. doi: 10.3181/00379727-122-31287. [DOI] [PubMed] [Google Scholar]
  7. LOWRY O. H., ROSEBROUGH N. J., FARR A. L., RANDALL R. J. Protein measurement with the Folin phenol reagent. J Biol Chem. 1951 Nov;193(1):265–275. [PubMed] [Google Scholar]
  8. Litwin S. D., Kunkel H. G. A gamma-globulin genetic factor related to Gm(a) but localized to a different portion of the same heavy chains. Nature. 1966 May 21;210(5038):866–866. doi: 10.1038/210866a0. [DOI] [PubMed] [Google Scholar]
  9. Litwin S. D., Kunkel H. G. Genetic factors of human gamma globulin detected by rabbit antisera. Transfusion. 1966 Mar-Apr;6(2):140–145. doi: 10.1111/j.1537-2995.1966.tb04712.x. [DOI] [PubMed] [Google Scholar]
  10. Mancini G., Carbonara A. O., Heremans J. F. Immunochemical quantitation of antigens by single radial immunodiffusion. Immunochemistry. 1965 Sep;2(3):235–254. doi: 10.1016/0019-2791(65)90004-2. [DOI] [PubMed] [Google Scholar]
  11. Mårtensson L., Kunkel H. G. Distribution among the gamma-globulin molecules of different genetically determined antigenic specificities in the Gm system. J Exp Med. 1965 Oct 1;122(4):799–811. doi: 10.1084/jem.122.4.799. [DOI] [PMC free article] [PubMed] [Google Scholar]
  12. Mårtensson L., van Loghem E., Matsumoto H., Nielsen J. Gm(s) and Gm(t): genetic determinants of human gamma-globulin. Vox Sang. 1966 Jul-Aug;11(4):393–418. doi: 10.1111/j.1423-0410.1966.tb04237.x. [DOI] [PubMed] [Google Scholar]
  13. NUSSENZWEIG R. S., MERRYMAN C., BENACERRAF B. ELECTROPHORETIC SEPARATION AND PROPERTIES OF MOUSE ANTIHAPTEN ANTIBODIES INVOLVED IN PASSIVE CUTANEOUS ANAPHYLAXIS AND PASSIVE HEMOLYSIS. J Exp Med. 1964 Aug 1;120:315–328. doi: 10.1084/jem.120.2.315. [DOI] [PMC free article] [PubMed] [Google Scholar]
  14. Natvig J. B. Gm(g)--a "new" gamma-globulin factor. Nature. 1966 Jul 16;211(5046):318–319. doi: 10.1038/211318a0. [DOI] [PubMed] [Google Scholar]
  15. OSSERMAN E. F., TAKATSUKI K. PLASMA CELL MYELOMA: GAMMA GLOBULIN SYNTHESIS AND STRUCTURE. A REVIEW OF BIOCHEMICAL AND CLINICAL DATA, WITH THE DESCRIPTION OF A NEWLY-RECOGNIZED AND RELATED SYNDROME, "H-GAMMA-2-CHAIN (FRANKLIN'S) DISEASE. Medicine (Baltimore) 1963 Nov;42:357–384. [PubMed] [Google Scholar]
  16. OVARY Z., BENACERRAF B., BLOCH K. J. Properties of guinea pig 7S antibodies. II. Identification of antibodies involved in passive cutaneous and systemic anaphylaxis. J Exp Med. 1963 Jun 1;117:951–964. doi: 10.1084/jem.117.6.951. [DOI] [PMC free article] [PubMed] [Google Scholar]
  17. PORTER R. R. The hydrolysis of rabbit y-globulin and antibodies with crystalline papain. Biochem J. 1959 Sep;73:119–126. doi: 10.1042/bj0730119. [DOI] [PMC free article] [PubMed] [Google Scholar]
  18. STEINBERG A. G., GOLDBLUM R. A GENETIC STUDY OF THE ANTIGENS ASSOCIATED WITH THE GM(B) FACTOR OF HUMAN GAMMA GLOBULIN. Am J Hum Genet. 1965 Mar;17:133–147. [PMC free article] [PubMed] [Google Scholar]
  19. TERRY W. D., FAHEY J. L. SUBCLASSES OF HUMAN GAMMA-2-GLOBULIN BASED ON DIFFERENCES IN THE HEAVY POLYPEPTIDE CHAINS. Science. 1964 Oct 16;146(3642):400–401. doi: 10.1126/science.146.3642.400. [DOI] [PubMed] [Google Scholar]
  20. Terry W. D., Fahley J. L., Steinberg A. G. GM and INV factors in subclasses of human IgG. J Exp Med. 1965 Dec 1;122(6):1087–1102. doi: 10.1084/jem.122.6.1087. [DOI] [PMC free article] [PubMed] [Google Scholar]
  21. Terry W. D. Skin-sensitizing activity related to gamma- polypeptide chain characteristics of human IgG. J Immunol. 1965 Dec;95(6):1041–1047. [PubMed] [Google Scholar]

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