4.6 Article

Redundant and Nonredundant Functions of ATM and H2AX in αβ T-Lineage Lymphocytes

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JOURNAL OF IMMUNOLOGY
卷 189, 期 3, 页码 1372-1379

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AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.1200829

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  1. Cancer Research Institute Predoctoral Emphasis Pathway
  2. Department of Pathology and Laboratory Medicine
  3. Center for Childhood Cancer Research of the Children's Hospital of Philadelphia Research Institute
  4. Pennsylvania Department of Health
  5. National Institutes of Health [R01 CA125195, R01 CA136470]

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The ataxia telangiectasia mutated (ATM) kinase and H2AX histone tumor suppressor proteins are each critical for maintenance of cellular genomic stability and suppression of lymphomas harboring clonal translocations. ATM is the predominant kinase that phosphorylates H2AX in chromatin around DNAdouble-strand breaks, including along lymphocyte Ag receptor loci cleaved during V(D) J recombination. However, combined germline inactivation of Atm and H2ax in mice causes early embryonic lethality associated with substantial cellular genomic instability, indicating that ATM and H2AX exhibit nonredundant functions in embryonic cells. To evaluate potential nonredundant roles of ATM and H2AX in somatic cells, we generated and analyzed Atm-deficient mice with conditional deletion of H2ax in ab T-lineage lymphocytes. Combined Atm/H2ax inactivation starting in early-stage CD4(-)/CD8(-) thymocytes resulted in lower numbers of later-stage CD4(+)/CD8(+) thymocytes, but led to no discernible V(D) J recombination defect in G1 phase cells beyond that observed in Atm-deficient cells. H2ax deletion in Atm-deficient thymocytes also did not affect the incidence or mortality of mice from thymic lymphomas with clonal chromosome 14 (TCR alpha/beta) translocations. Yet, in vitro-stimulated Atm/H2ax-deficient splenic alpha beta T cells exhibited a higher frequency of genomic instability, including radial chromosome translocations and TCR beta translocations, compared with cells lacking Atm or H2ax. Collectively, our data demonstrate that both redundant and nonredundant functions of ATM and H2AX are required for normal recombination of TCR loci, proliferative expansion of developing thymocytes, and maintenance of genomic stability in cycling ab T-lineage cells. The Journal of Immunology, 2012, 189: 1372-1379.

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