Literature DB >> 21450905

Uncoupling p53 functions in radiation-induced intestinal damage via PUMA and p21.

Brian J Leibowitz1, Wei Qiu, Hongtao Liu, Tao Cheng, Lin Zhang, Jian Yu.   

Abstract

The role of p53 in tissue protection is not well understood. Loss of p53 blocks apoptosis in the intestinal crypts following irradiation but paradoxically accelerates gastrointestinal (GI) damage and death. PUMA and p21 are the major mediators of p53-dependent apoptosis and cell-cycle checkpoints, respectively. To better understand these two arms of p53 response in radiation-induced GI damage, we compared animal survival, as well as apoptosis, proliferation, cell-cycle progression, DNA damage, and regeneration in the crypts of WT, p53 knockout (KO), PUMA KO, p21 KO, and p21/PUMA double KO (DKO) mice in a whole body irradiation model. Deficiency in p53 or p21 led to shortened survival but accelerated crypt regeneration associated with massive nonapoptotic cell death. Nonapoptotic cell death is characterized by aberrant cell-cycle progression, persistent DNA damage, rampant replication stress, and genome instability. PUMA deficiency alone enhanced survival and crypt regeneration by blocking apoptosis but failed to rescue delayed nonapoptotic crypt death or shortened survival in p21 KO mice. These studies help to better understand p53 functions in tissue injury and regeneration and to potentially improve strategies to protect or mitigate intestinal damage induced by radiation.

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Year:  2011        PMID: 21450905      PMCID: PMC3096742          DOI: 10.1158/1541-7786.MCR-11-0052

Source DB:  PubMed          Journal:  Mol Cancer Res        ISSN: 1541-7786            Impact factor:   5.852


  51 in total

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Journal:  Genes Dev       Date:  1999-06-15       Impact factor: 11.361

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Journal:  Oncogene       Date:  1997-06-12       Impact factor: 9.867

4.  ATM regulates target switching to escalating doses of radiation in the intestines.

Authors:  Hui-Ju Ch'ang; Jerzy G Maj; François Paris; H Rosie Xing; Jianjun Zhang; Jean-Philip Truman; Carlos Cardon-Cardo; Adriana Haimovitz-Friedman; Richard Kolesnick; Zvi Fuks
Journal:  Nat Med       Date:  2005-05-01       Impact factor: 53.440

Review 5.  The transcriptional targets of p53 in apoptosis control.

Authors:  Jian Yu; Lin Zhang
Journal:  Biochem Biophys Res Commun       Date:  2005-06-10       Impact factor: 3.575

6.  Slug antagonizes p53-mediated apoptosis of hematopoietic progenitors by repressing puma.

Authors:  Wen-Shu Wu; Stefan Heinrichs; Dong Xu; Sean P Garrison; Gerard P Zambetti; Jerry M Adams; A Thomas Look
Journal:  Cell       Date:  2005-11-18       Impact factor: 41.582

7.  Loss of p21 increases sensitivity to ionizing radiation and delays the onset of lymphoma in atm-deficient mice.

Authors:  Y A Wang; A Elson; P Leder
Journal:  Proc Natl Acad Sci U S A       Date:  1997-12-23       Impact factor: 11.205

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Journal:  Cancer Res       Date:  2000-09-15       Impact factor: 12.701

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Journal:  Nature       Date:  1996-06-20       Impact factor: 49.962

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Journal:  Nat Genet       Date:  1997-08       Impact factor: 38.330

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  60 in total

1.  p21 protects "Super p53" mice from the radiation-induced gastrointestinal syndrome.

Authors:  Julie M Sullivan; Laura B Jeffords; Chang-Lung Lee; Rafaela Rodrigues; Yan Ma; David G Kirsch
Journal:  Radiat Res       Date:  2011-12-13       Impact factor: 2.841

Review 2.  Radiation enteropathy--pathogenesis, treatment and prevention.

Authors:  Martin Hauer-Jensen; James W Denham; H Jervoise N Andreyev
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2014-04-01       Impact factor: 46.802

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Authors:  Katelyn M Atkins; Laura L Thomas; Jonathan Barroso-González; Laurel Thomas; Sylvain Auclair; Jun Yin; Hyeog Kang; Jay H Chung; Jimmy D Dikeakos; Gary Thomas
Journal:  Cell Rep       Date:  2014-08-21       Impact factor: 9.423

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Authors:  Shenika V Poindexter; Vishruth K Reddy; Mukul K Mittal; Amanda M Williams; M Kay Washington; Elizabeth Harris; Amanda Mah; Scott W Hiebert; Kshipra Singh; Rupesh Chaturvedi; Keith T Wilson; P Kay Lund; Christopher S Williams
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2015-01-08       Impact factor: 4.052

5.  An oral HemokineTM, α-methylhydrocinnamate, enhances myeloid and neutrophil recovery following irradiation in vivo.

Authors:  Douglas V Faller; Serguei A Castaneda; Daohong Zhou; Merriline Vedamony; Peter E Newburger; Gary L White; Stanley Kosanke; P Artur Plett; Christie M Orschell; Michael S Boosalis; Susan P Perrine
Journal:  Blood Cells Mol Dis       Date:  2016-10-31       Impact factor: 3.039

6.  PUMA-mediated apoptosis drives chemical hepatocarcinogenesis in mice.

Authors:  Wei Qiu; Xinwei Wang; Brian Leibowitz; Wancai Yang; Lin Zhang; Jian Yu
Journal:  Hepatology       Date:  2011-10       Impact factor: 17.425

7.  GUCY2C Signaling Opposes the Acute Radiation-Induced GI Syndrome.

Authors:  Peng Li; Evan Wuthrick; Jeff A Rappaport; Crystal Kraft; Jieru E Lin; Glen Marszalowicz; Adam E Snook; Tingting Zhan; Terry M Hyslop; Scott A Waldman
Journal:  Cancer Res       Date:  2017-09-15       Impact factor: 12.701

8.  Crizotinib induces PUMA-dependent apoptosis in colon cancer cells.

Authors:  Xingnan Zheng; Kan He; Lin Zhang; Jian Yu
Journal:  Mol Cancer Ther       Date:  2013-02-20       Impact factor: 6.261

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Authors:  Chang-Lung Lee; Jordan M Blum; David G Kirsch
Journal:  Transl Cancer Res       Date:  2013-10       Impact factor: 1.241

10.  Paradoxical Roles of Elongation Factor-2 Kinase in Stem Cell Survival.

Authors:  Yi Liao; Hsueh-Ping Chu; Zhixian Hu; Jason J Merkin; Jianmin Chen; Zuguo Liu; Kurt Degenhardt; Eileen White; Alexey G Ryazanov
Journal:  J Biol Chem       Date:  2016-07-27       Impact factor: 5.157

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