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Predisposition to Cancer Caused by Genetic and Functional Defects of Mammalian Atad5

Daphne W. Bell, Nilabja Sikdar, Kyoo‐young Lee, Jessica C. Price, Raghunath Chatterjee, Hee‐Dong Park, Jennifer T. Fox, Masamichi Ishiai, Meghan L. Rudd, Lana M. Pollock, Sarah Fogoros, Hassan Mohamed, Christin L. Hanigan, NISC Comparative Sequencing Program, Suiyuan Zhang

PLoS Genetics · 2011 · ▲ 99 citations

Abstract

ATAD5, the human ortholog of yeast Elg1, plays a role in PCNA deubiquitination. Since PCNA modification is important to regulate DNA damage bypass, ATAD5 may be important for suppression of genomic instability in mammals in vivo. To test this hypothesis, we generated heterozygous (Atad5(+/m)) mice that were haploinsuffficient for Atad5. Atad5(+/m) mice displayed high levels of genomic instability in vivo, and Atad5(+/m) mouse embryonic fibroblasts (MEFs) exhibited molecular defects in PCNA deubiquitination in response to DNA damage, as well as DNA damage hypersensitivity and high levels of genomic instability, apoptosis, and aneuploidy. Importantly, 90% of haploinsufficient Atad5(+/m) mice developed tumors, including sarcomas, carcinomas, and adenocarcinomas, between 11 and 20 months of age. High levels of genomic alterations were evident in tumors that arose in the Atad5(+/m) mice. Consistent with a role for Atad5 in suppressing tumorigenesis, we also identified somatic mutations of ATAD5 in 4.6% of sporadic human endometrial tumors, including two nonsense mutations that resulted in loss of proper ATAD5 function. Taken together, our findings indicate that loss-of-function mutations in mammalian Atad5 are sufficient to cause genomic instability and tumorigenesis.

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OpenAlex
DOI
10.1371/journal.pgen.1002245
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2026-06-02 MST

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APA
Bell, D.W., Sikdar, N., Lee, K., Price, J.C., Chatterjee, R., Park, H., Fox, J.T., Ishiai, M., Rudd, M.L., Pollock, L.M., Fogoros, S., Mohamed, H., Hanigan, C.L., Program, N.C.S., Zhang, S., Cruz, P., Renaud, G., Hansen, N.F., Cherukuri, P.F., &amp; Borate, B. (2011). Predisposition to Cancer Caused by Genetic and Functional Defects of Mammalian Atad5. <em>PLoS Genetics</em>. https://doi.org/10.1371/journal.pgen.1002245
Vancouver
Bell DW, Sikdar N, Lee K, Price JC, Chatterjee R, Park H, et al. Predisposition to Cancer Caused by Genetic and Functional Defects of Mammalian Atad5. PLoS Genetics. 2011. doi:10.1371/journal.pgen.1002245.
BibTeX
@article{daphne2011Predis, title = {Predisposition to Cancer Caused by Genetic and Functional Defects of Mammalian Atad5}, author = {Daphne W. Bell and Nilabja Sikdar and Kyoo‐young Lee and Jessica C. Price and Raghunath Chatterjee and Hee‐Dong Park and Jennifer T. Fox and Masamichi Ishiai and Meghan L. Rudd and Lana M. Pollock and Sarah Fogoros and Hassan Mohamed and Christin L. Hanigan and NISC Comparative Sequencing Program and Suiyuan Zhang and Pedro Cruz and Gabriel Renaud and Nancy F. Hansen and Praveen F. Cherukuri and Bhavesh Borate and Kirk J. McManus and Jan Stoepel and Payal Sipahimalani and Andrew K. Godwin and Dennis C. Sgroi}, journal = {PLoS Genetics}, year = {2011}, doi = {10.1371/journal.pgen.1002245}, }

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