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An inducible null mutant murine model of Nijmegen breakage syndrome proves the essential function of NBS1 in chromosomal stability and cell viability.
- Source :
-
Human molecular genetics [Hum Mol Genet] 2004 Oct 15; Vol. 13 (20), pp. 2385-97. Date of Electronic Publication: 2004 Aug 27. - Publication Year :
- 2004
-
Abstract
- The human genetic disorder, Nijmegen breakage syndrome, is characterized by radiosensitivity, immunodeficiency, chromosomal instability and an increased risk for cancer of the lymphatic system. The NBS1 gene codes for a protein, nibrin, involved in the processing/repair of DNA double strand breaks and in cell cycle checkpoints. Most patients are homozygous for a founder mutation, a 5 bp deletion, which might not be a null mutation, as functionally relevant truncated nibrin proteins are observed, at least in vitro. In agreement with this hypothesis, null mutation of the homologous gene, Nbn, is lethal in mice. Here, we have used Cre recombinase/loxP technology to generate an inducible Nbn null mutation allowing the examination of DNA-repair and cell cycle-checkpoints in the complete absence of nibrin. Induction of Nbn null mutation leads to the loss of the G2/M checkpoint, increased chromosome damage, radiomimetic-sensitivity and cell death. In vivo, this particularly affects the lymphatic tissues, bone marrow, thymus and spleen, whereas liver, kidney and muscle are hardly affected. In vitro, null mutant murine fibroblasts can be rescued from cell death by transfer of human nibrin cDNA and, more significantly, by a cDNA carrying the 5 bp deletion. This demonstrates, for the first time, that the common human mutation is hypomorphic and that the expression of a truncated protein is sufficient to restore nibrin's vital cellular functions.
- Subjects :
- Animals
Cell Cycle genetics
Cell Survival genetics
Cells, Cultured
Chromosome Breakage genetics
DNA Repair genetics
DNA, Complementary genetics
DNA-Binding Proteins
Disease Models, Animal
Fibroblasts metabolism
Gene Targeting
Humans
Immunologic Deficiency Syndromes genetics
Integrases genetics
Integrases metabolism
Mice
Mice, Mutant Strains
Sequence Deletion genetics
Syndrome
Viral Proteins genetics
Viral Proteins metabolism
Cell Cycle Proteins genetics
Cell Cycle Proteins physiology
Chromosomal Instability genetics
Chromosome Disorders genetics
Nuclear Proteins genetics
Nuclear Proteins physiology
Subjects
Details
- Language :
- English
- ISSN :
- 0964-6906
- Volume :
- 13
- Issue :
- 20
- Database :
- MEDLINE
- Journal :
- Human molecular genetics
- Publication Type :
- Academic Journal
- Accession number :
- 15333589
- Full Text :
- https://doi.org/10.1093/hmg/ddh278