Home LiteratureArticle Details
PMID: 8063614 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Increased rate of spontaneous mitotic recombination in T lymphocytes from a Bloom's syndrome patient using a flow-cytometric assay at HLA-A locus.

Japanese journal of cancer research : Gann ·Vol. 85 ·No. 6 ·1994-06-00 ·Pages 610-8

Kusunoki Y, Hayashi T, Hirai Y, Kushiro J, Tatsumi K, Kurihara T, Zghal M, Kamoun MR, Takebe H, Jeffreys A

Abstract

Bloom's syndrome (BS) is an autosomal recessive disorder conferring high propensity for cancer and displaying a high degree of genetic instability; the frequency of sister chromatid exchange is characteristically 10 times above background. The symmetrical four-armed chromatid interchanges are much more readily detected in peripheral blood lymphocytes of BS patients, suggesting that the frequency of somatic recombination is also increased. In the present study, the rate of spontaneous loss of HLA-A allele expression was estimated following fluctuation analysis in cultured T lymphocytes using a flow-cytometric assay. It was found to be 10 times or more higher than normal in lymphocytes from a BS patient. Molecular and chromosome analyses showed that all 13 independent variants from the patient were most likely derived from somatic recombinations. Further tests for loss of heterozygosity at a closely linked proximal locus, HLA-DQA1, showed that as many as half of the recombinants retained heterozygosity irrespective of the donor. The results suggest that the HLA region is hyperrecombinogenic in somatic cells and that the elevated recombination rate in BS cells results from the general increase at ordinary sites and not from random creation of unusual sites for recombination.

Related Genes
MeSH Terms
Adult Alleles Bloom Syndrome/blood,genetics Cell Cycle/physiology Cells, Cultured Chromosomes, Human Female Flow Cytometry HLA-A Antigens/genetics HLA-DQ Antigens/genetics HLA-DQ alpha-Chains Humans Male Middle Aged Mitosis/physiology Mutation Polymerase Chain Reaction Recombination, Genetic Sister Chromatid Exchange T-Lymphocytes/cytology,physiology
Chemicals
HLA-A Antigens HLA-DQ Antigens HLA-DQ alpha-Chains HLA-DQA1 antigen
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Kusunoki Y
Department of Radiobiology, Radiation Effects Research Foundation, Hiroshima.
Hayashi T
Hirai Y
Kushiro J
Tatsumi K
Kurihara T
Zghal M
Kamoun M R
Takebe H
Jeffreys A
References (39)
39 references, click to expand
  1. Development of a flow-cytometric HLA-A locus mutation assay for human peripheral blood lymphocytes.
    Mutat Res. 1992 Aug;272(1):17-29 PMID: 1380116
  2. Frequencies of sister-chromatid exchanges in relation to cell kinetics in lymphocyte cultures.
    Mutat Res. 1980 May;70(3):343-50 PMID: 6155609
  3. CHROMOSOMAL BREAKAGE IN A RARE AND PROBABLY GENETICALLY DETERMINED SYNDROME OF MAN.
    Science. 1965 Apr 23;148(3669):506-7 PMID: 14263770
  4. Sister-chromatid exchange in childhood in relation to age and sex.
    Mutat Res. 1986 Aug;174(4):309-12 PMID: 3736580
  5. Elevated spontaneous mutation rate in Bloom syndrome fibroblasts.
    Proc Natl Acad Sci U S A. 1981 May;78(5):3133-7 PMID: 6942420
  6. A human T cell-specific cDNA clone encodes a protein having extensive homology to immunoglobulin chains.
    Nature. 1984 Mar 8-14;308(5955):145-9 PMID: 6336315
  7. DNA ligase I deficiency in Bloom's syndrome.
    Nature. 1987 Jan 22-28;325(6102):355-7 PMID: 3808031
  8. Bloom's syndrome. XVIII. Hypermutability at a tandem-repeat locus.
    Hum Genet. 1992 Dec;90(4):360-7 PMID: 1483691
  9. Different mutations responsible for the elevated sister-chromatid exchange frequencies in Bloom syndrome and X-irradiated B-lymphoblastoid cell lines originating from acute leukemia.
    Mutat Res. 1989 Apr;211(2):273-8 PMID: 2784538
  10. Congenital telangiectatic erythema resembling lupus erythematosus in dwarfs; probably a syndrome entity.
    AMA Am J Dis Child. 1954 Dec;88(6):754-8 PMID: 13206391
  11. Evidence for increased in vivo mutation and somatic recombination in Bloom's syndrome.
    Proc Natl Acad Sci U S A. 1989 Jan;86(2):670-4 PMID: 2911598
  12. Altered DNA ligase I activity in Bloom's syndrome cells.
    Nature. 1987 Jan 22-28;325(6102):357-9 PMID: 3808032
  13. CYTOLOGICAL EVIDENCE FOR CROSSING-OVER IN VITRO IN HUMAN LYMPHOID CELLS.
    Science. 1964 Apr 17;144(3616):298-301 PMID: 14169717
  14. Report of the committee on the genetic constitution of chromosome 6.
    Cytogenet Cell Genet. 1990;55(1-4):118-21 PMID: 2073824
  15. 5-Bromodeoxyuridine-dependent increase in sister chromatid exchange formation in Bloom's syndrome is associated with reduction in topoisomerase II activity.
    Exp Cell Res. 1987 Mar;169(1):245-54 PMID: 3028845
  16. Report of the committee on the genetic constitution of chromosomes 5 and 6.
    Cytogenet Cell Genet. 1987;46(1-4):147-69 PMID: 3507272
  17. In vivo human somatic mutation: frequency and spectrum with age.
    Mutat Res. 1992 Apr;266(2):189-96 PMID: 1373828
  18. Gene maps and location databases.
    Ann Hum Genet. 1991 Jul;55(Pt 3):235-41 PMID: 1763886
  19. Molecular nature of in vivo mutations in human cells at the autosomal HLA-A locus.
    Cancer Res. 1990 Aug 1;50(15):4584-7 PMID: 2369733
  20. Immunological lesions in human uracil DNA glycosylase: association with Bloom syndrome.
    Proc Natl Acad Sci U S A. 1988 Apr;85(7):2339-43 PMID: 3353381
  21. Bloom's syndrome. III. Analysis of the chromosome aberration characteristic of this disorder.
    Chromosoma. 1974;48(4):361-6 PMID: 4448109
  22. Mutations of Bacteria from Virus Sensitivity to Virus Resistance.
    Genetics. 1943 Nov;28(6):491-511 PMID: 17247100
  23. Sister-chromatid exchanges induced by ultraviolet light in Bloom's syndrome fibroblasts.
    Mutat Res. 1987 Mar;183(2):197-202 PMID: 3821765
  24. Isolation of HLA locus-specific DNA probes from the 3'-untranslated region.
    Proc Natl Acad Sci U S A. 1984 Aug;81(16):5175-8 PMID: 6591185
  25. Systematic cloning of human minisatellites from ordered array charomid libraries.
    Genomics. 1990 Nov;8(3):501-12 PMID: 2149560
  26. Genetic analysis of amplified DNA with immobilized sequence-specific oligonucleotide probes.
    Proc Natl Acad Sci U S A. 1989 Aug;86(16):6230-4 PMID: 2762325
  27. Elevated sister chromatid exchange phenotype of Bloom syndrome cells is complemented by human chromosome 15.
    Proc Natl Acad Sci U S A. 1992 Sep 1;89(17):7968-72 PMID: 1518822
  28. Diphtheria toxin resistance in human fibroblast cell strains from normal and cancer-prone individuals.
    Mutat Res. 1980 Dec;73(2):331-8 PMID: 7464842
  29. A manyfold increase in sister chromatid exchanges in Bloom's syndrome lymphocytes.
    Proc Natl Acad Sci U S A. 1974 Nov;71(11):4508-12 PMID: 4140506
  30. Organization of the human class I major histocompatibility complex genes.
    Immunol Res. 1987;6(1-2):1-10 PMID: 3040873
  31. Evidence for in vivo clonal proliferation of unique population of blood CD4-/CD8- T cells bearing T-cell receptor alpha and beta chains in two normal men.
    Blood. 1992 Jun 1;79(11):2965-72 PMID: 1586742
  32. A simple and rapid method for HLA-DQA1 genotyping by polymerase chain reaction-single strand conformation polymorphism and restriction enzyme cleavage analysis.
    Electrophoresis. 1992 Nov;13(11):877-9 PMID: 1483431
  33. Dads and disomy and disease.
    Nature. 1991 Jun 20;351(6328):609-10 PMID: 2052085
  34. Elevated superoxide dismutase in Bloom's syndrome: a genetic condition of oxidative stress.
    Cancer Res. 1989 Oct 1;49(19):5239-43 PMID: 2766291
  35. Frequency of variant erythrocytes at the glycophorin-A locus in two Bloom's syndrome patients.
    Mutat Res. 1989 Oct;214(2):215-22 PMID: 2677702
  36. Spontaneous loss and alteration of antigen receptor expression in mature CD4+ T cells.
    J Exp Med. 1990 Jun 1;171(6):1981-99 PMID: 1972177
  37. Bloom's syndrome: evidence for an increased mutation frequency in vivo.
    Science. 1983 Aug 26;221(4613):851-3 PMID: 6879180
  38. Structural alterations of DNA ligase I in Bloom syndrome.
    Proc Natl Acad Sci U S A. 1987 Nov;84(22):8016-20 PMID: 3479778
  39. A novel human DNA polymorphism resulting from transfer of DNA from chromosome 6 to chromosome 16.
    Genomics. 1990 Jun;7(2):222-34 PMID: 1971807
Article Info
Journal
Japanese journal of cancer research : Gann
Abbr.
Jpn J Cancer Res
ISSN
0910-5050
Published
1994-06-00
Pages
610-8
Language
English
Region
Japan
NLM ID
8509412
PMCID
PMC5919530
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com