Ku70-deficient embryonic stem cells have increased ionizing radiosensitivity, defective DNA end-binding activity, and inability to support V(D)J recombination

  1. Yansong Gu*,,
  2. Shengfang Jin,
  3. Yijie Gao,§,
  4. David T. Weaver, and
  5. Frederick W. Alt*,,§,,
  1. The Howard Hughes Medical Institute and *Children’s Hospital, Boston, MA 02115; §Center for Blood Research and Department of Genetics, Harvard Medical School, Boston, MA 02115; and Division of Tumor Immunology, Dana–Farber Cancer Institute and Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, MA 02115

Abstract

V(D)J recombination requires both lymphoid-specific and generally expressed enzymatic activities. All three known generally expressed activities involved in V(D)J recombination are also involved in DNA double-strand break repair (DSBR). Two of these are components of the DNA-dependent protein kinase (DNA-PK) and include Ku80 and DNA-PK catalytic subunit (DNA-PKcs); the third, XRCC4, is a protein of unknown function. The Ku70 protein is an additional component of DNA-PK; Ku70 forms a heterodimer with Ku80 to generate the DNA end-binding component of the enzyme. To test putative functions for Ku70, we have used gene-targeted mutation to generate a murine embryonic stem cell line which lacks Ku70 expression. We find that the Ku70−/− cells produce no detectable Ku70 and very little Ku80, suggesting a direct interrelationship between their levels. Correspondingly, these cells lack the nonspecific DNA end-binding activity associated with Ku. Significantly, the Ku70−/− embryonic stem cells have markedly increased sensitivity to γ-irradiation relative to Ku70+/− or wild-type embryonic stem cells. Furthermore, the Ku70−/− cells lack the ability to effectively rejoin signal and coding ends liberated in transiently introduced V(D)J recombination substrates by enforced RAG-1 and RAG-2 expression. We conclude that the Ku70 gene product is involved in DSBR and V(D)J recombination and confirm that the Ku70 gene can be classified as a member of the x-ray cross-complementation group 6 (XRCC6). Potential differences between the Ku70−/− and Ku80−/− V(D)J recombination defects are discussed.

Footnotes

  • To whom reprint requests should be addressed at: The Howard Hughes Medical Institute, Children’s Hospital, Enders 861, 320 Longwood Avenue, Boston, MA 02115. e-mail: alt{at}rascal.med.harvard.edu.

  • Frederick W. Alt

  • ABBREVIATIONS:
    ES cells,
    embryonic stem cells;
    DSB,
    double-strand DNA break;
    DSBR,
    DSB repair;
    XRCC,
    x-ray cross-complementation;
    RS,
    recombination signal;
    Scid,
    severe combined immune-deficient;
    DNA-PK,
    DNA-dependent protein kinase;
    DNA-PKcs,
    DNA-dependent protein kinase catalytic subunit;
    MEF,
    murine embryonic fibroblast;
    CHO,
    Chinese hamster ovary;
    Ampr,
    ampicillin-resistant;
    Camr,
    chloramphenicol-resistant
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