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Publication : Loss of PICH Results in Chromosomal Instability, p53 Activation, and Embryonic Lethality.

First Author  Albers E Year  2018
Journal  Cell Rep Volume  24
Issue  12 Pages  3274-3284
PubMed ID  30232008 Mgi Jnum  J:271028
Mgi Id  MGI:6278377 Doi  10.1016/j.celrep.2018.08.071
Citation  Albers E, et al. (2018) Loss of PICH Results in Chromosomal Instability, p53 Activation, and Embryonic Lethality. Cell Rep 24(12):3274-3284
abstractText  PICH is a DNA translocase necessary for the resolution of ultrafine anaphase DNA bridges and to ensure the fidelity of chromosomal segregation. Here, we report the generation of an animal model deficient for PICH that allowed us to investigate its physiological relevance. Pich KO mice lose viability during embryonic development due to a global accumulation of DNA damage. However, despite the presence of chromosomal instability, extensive p53 activation, and increased apoptosis throughout the embryo, Pich KO embryos survive until day 12.5 of embryonic development. The absence of p53 failed to improve the viability of the Pich KO embryos, suggesting that the observed developmental defects are not solely due to p53-induced apoptosis. Moreover, Pich-deficient mouse embryonic fibroblasts exhibit chromosomal instability and are resistant to RAS(V12)/E1A-induced transformation. Overall, our data indicate that PICH is essential to preserve chromosomal integrity in rapidly proliferating cells and is therefore critical during embryonic development and tumorigenesis.
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