Role of Nbs1 in the activation of the Atm kinase revealed in humanized mouse models

被引:0
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作者
Simone Difilippantonio
Arkady Celeste
Oscar Fernandez-Capetillo
Hua-Tang Chen
Bernardo Reina San Martin
Francois Van Laethem
Yong-Ping Yang
Galina V. Petukhova
Michael Eckhaus
Lionel Feigenbaum
Katia Manova
Michael Kruhlak
R. Daniel Camerini-Otero
Shyam Sharan
Michel Nussenzweig
André Nussenzweig
机构
[1] Experimental Immunology Branch,Division of Veterinary Resources
[2] National Cancer Institute,Genomic Instability Group, Molecular Oncology Program
[3] National Institutes of Health,undefined
[4] Laboratory of Molecular Immunology,undefined
[5] The Rockefeller University,undefined
[6] Howard Hughes Medical Institute,undefined
[7] The Rockefeller University,undefined
[8] Mouse Cancer Genetics Program,undefined
[9] National Cancer Institute at Frederick,undefined
[10] Genetics and Biochemistry Branch,undefined
[11] National Institutes of Diabetes and Digestive and Kidney Diseases,undefined
[12] National Institutes of Health,undefined
[13] Office of Research Services,undefined
[14] Office of the Director,undefined
[15] National Institutes of Health,undefined
[16] SAIC-Frederick,undefined
[17] National Cancer Institute-Frederick Cancer Research and Development Center,undefined
[18] Molecular Cytology Core Facility and Molecular Biology Program,undefined
[19] Memorial Sloan-Kettering Cancer Center,undefined
[20] Spanish National Cancer Center (CNIO),undefined
来源
Nature Cell Biology | 2005年 / 7卷
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摘要
Nijmegen breakage syndrome (NBS) is a chromosomal fragility disorder that shares clinical and cellular features with ataxia telangiectasia. Here we demonstrate that Nbs1-null B cells are defective in the activation of ataxia-telangiectasia-mutated (Atm) in response to ionizing radiation, whereas ataxia-telangiectasia- and Rad3-related (Atr)-dependent signalling and Atm activation in response to ultraviolet light, inhibitors of DNA replication, or hypotonic stress are intact. Expression of the main human NBS allele rescues the lethality of Nbs1−/− mice, but leads to immunodeficiency, cancer predisposition, a defect in meiotic progression in females and cell-cycle checkpoint defects that are associated with a partial reduction in Atm activity. The Mre11 interaction domain of Nbs1 is essential for viability, whereas the Forkhead-associated (FHA) domain is required for T-cell and oocyte development and efficient DNA damage signalling. Reconstitution of Nbs1 knockout mice with various mutant isoforms demonstrates the biological impact of impaired Nbs1 function at the cellular and organismal level.
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页码:675 / 685
页数:10
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