Literature DB >> 17242198

Definition of pRB- and p53-dependent and -independent steps in HIRA/ASF1a-mediated formation of senescence-associated heterochromatin foci.

Xiaofen Ye1, Brad Zerlanko, Rugang Zhang, Neeta Somaiah, Marc Lipinski, Paolo Salomoni, Peter D Adams.   

Abstract

Cellular senescence is an irreversible proliferation arrest triggered by short chromosome telomeres, activated oncogenes, and cell stress and mediated by the pRB and p53 tumor suppressor pathways. One of the earliest steps in the senescence program is translocation of a histone chaperone, HIRA, into promyelocytic leukemia (PML) nuclear bodies. This relocalization precedes other markers of senescence, including the appearance of specialized domains of facultative heterochromatin called senescence-associated heterochromatin foci (SAHF) and cell cycle exit. SAHF represses expression of proliferation-promoting genes, thereby driving exit from the cell cycle. HIRA bound to another histone chaperone, ASF1a, drives formation of SAHF. Here, we show that HIRA's translocation to PML bodies occurs in response to all senescence triggers tested. Dominant negative HIRA mutants that block HIRA's localization to PML bodies prevent formation of SAHF, as does a PML-RARalpha fusion protein which disrupts PML bodies, directly supporting the idea that localization of HIRA to PML bodies is required for formation of SAHF. Significantly, translocation of HIRA to PML bodies occurs in the absence of functional pRB and p53 tumor suppressor pathways. However, our evidence indicates that downstream of HIRA's localization to PML bodies, the HIRA/ASF1a pathway cooperates with pRB and p53 to make SAHF, with the HIRA/ASF1a and pRB pathways acting in parallel. We present evidence that convergence of the HIRA/ASF1a and pRB pathways occurs through a DNAJ-domain protein, DNAJA2.

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Year:  2007        PMID: 17242198      PMCID: PMC1899904          DOI: 10.1128/MCB.01592-06

Source DB:  PubMed          Journal:  Mol Cell Biol        ISSN: 0270-7306            Impact factor:   4.272


  69 in total

1.  Formation of MacroH2A-containing senescence-associated heterochromatin foci and senescence driven by ASF1a and HIRA.

Authors:  Rugang Zhang; Maxim V Poustovoitov; Xiaofen Ye; Hidelita A Santos; Wei Chen; Sally M Daganzo; Jan P Erzberger; Ilya G Serebriiskii; Adrian A Canutescu; Roland L Dunbrack; John R Pehrson; James M Berger; Paul D Kaufman; Peter D Adams
Journal:  Dev Cell       Date:  2005-01       Impact factor: 12.270

2.  The HIR corepressor complex binds to nucleosomes generating a distinct protein/DNA complex resistant to remodeling by SWI/SNF.

Authors:  Philippe Prochasson; Laurence Florens; Selene K Swanson; Michael P Washburn; Jerry L Workman
Journal:  Genes Dev       Date:  2005-11-01       Impact factor: 11.361

Review 3.  Tumour suppressor retinoblastoma protein Rb: a transcriptional regulator.

Authors:  Liang Zhu
Journal:  Eur J Cancer       Date:  2005-10-04       Impact factor: 9.162

Review 4.  SV40 large T antigen targets multiple cellular pathways to elicit cellular transformation.

Authors:  Deepika Ahuja; M Teresa Sáenz-Robles; James M Pipas
Journal:  Oncogene       Date:  2005-11-21       Impact factor: 9.867

5.  The histone H3.3 chaperone HIRA is essential for chromatin assembly in the male pronucleus.

Authors:  Benjamin Loppin; Emilie Bonnefoy; Caroline Anselme; Anne Laurençon; Timothy L Karr; Pierre Couble
Journal:  Nature       Date:  2005-10-27       Impact factor: 49.962

6.  Maize rough sheath2 and its Arabidopsis orthologue ASYMMETRIC LEAVES1 interact with HIRA, a predicted histone chaperone, to maintain knox gene silencing and determinacy during organogenesis.

Authors:  Tara L Phelps-Durr; Julie Thomas; Phil Vahab; Marja C P Timmermans
Journal:  Plant Cell       Date:  2005-10-21       Impact factor: 11.277

7.  BRAFE600-associated senescence-like cell cycle arrest of human naevi.

Authors:  Chrysiis Michaloglou; Liesbeth C W Vredeveld; Maria S Soengas; Christophe Denoyelle; Thomas Kuilman; Chantal M A M van der Horst; Donné M Majoor; Jerry W Shay; Wolter J Mooi; Daniel S Peeper
Journal:  Nature       Date:  2005-08-04       Impact factor: 49.962

8.  Tumour biology: senescence in premalignant tumours.

Authors:  Manuel Collado; Jesús Gil; Alejo Efeyan; Carmen Guerra; Alberto J Schuhmacher; Marta Barradas; Alberto Benguría; Angel Zaballos; Juana M Flores; Mariano Barbacid; David Beach; Manuel Serrano
Journal:  Nature       Date:  2005-08-04       Impact factor: 49.962

9.  Crucial role of p53-dependent cellular senescence in suppression of Pten-deficient tumorigenesis.

Authors:  Zhenbang Chen; Lloyd C Trotman; David Shaffer; Hui-Kuan Lin; Zohar A Dotan; Masaru Niki; Jason A Koutcher; Howard I Scher; Thomas Ludwig; William Gerald; Carlos Cordon-Cardo; Pier Paolo Pandolfi
Journal:  Nature       Date:  2005-08-04       Impact factor: 49.962

10.  Oncogene-induced senescence as an initial barrier in lymphoma development.

Authors:  Melanie Braig; Soyoung Lee; Christoph Loddenkemper; Cornelia Rudolph; Antoine H F M Peters; Brigitte Schlegelberger; Harald Stein; Bernd Dörken; Thomas Jenuwein; Clemens A Schmitt
Journal:  Nature       Date:  2005-08-04       Impact factor: 49.962

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  77 in total

1.  Identification of an ubinuclein 1 region required for stability and function of the human HIRA/UBN1/CABIN1/ASF1a histone H3.3 chaperone complex.

Authors:  Yong Tang; Aastha Puri; M Daniel Ricketts; Taranjit Singh Rai; Jason Hoffmann; Elise Hoi; Peter D Adams; David C Schultz; Ronen Marmorstein
Journal:  Biochemistry       Date:  2012-03-16       Impact factor: 3.162

Review 2.  Linking DNA replication to heterochromatin silencing and epigenetic inheritance.

Authors:  Qing Li; Zhiguo Zhang
Journal:  Acta Biochim Biophys Sin (Shanghai)       Date:  2012-01       Impact factor: 3.848

Review 3.  PML nuclear bodies.

Authors:  Valérie Lallemand-Breitenbach; Hugues de Thé
Journal:  Cold Spring Harb Perspect Biol       Date:  2010-04-21       Impact factor: 10.005

4.  A kinase shRNA screen links LATS2 and the pRB tumor suppressor.

Authors:  Katrin Tschöp; Andrew R Conery; Larisa Litovchick; James A Decaprio; Jeffrey Settleman; Ed Harlow; Nicholas Dyson
Journal:  Genes Dev       Date:  2011-04-15       Impact factor: 11.361

Review 5.  A comparative analysis of the cell biology of senescence and aging.

Authors:  Eun Seong Hwang; Gyesoon Yoon; Hyun Tae Kang
Journal:  Cell Mol Life Sci       Date:  2009-05-07       Impact factor: 9.261

6.  Transcriptional coactivators are not required for herpes simplex virus type 1 immediate-early gene expression in vitro.

Authors:  Sebla B Kutluay; Sarah L DeVos; Jennifer E Klomp; Steven J Triezenberg
Journal:  J Virol       Date:  2009-01-28       Impact factor: 5.103

7.  Wnt5a suppresses epithelial ovarian cancer by promoting cellular senescence.

Authors:  Benjamin G Bitler; Jasmine P Nicodemus; Hua Li; Qi Cai; Hong Wu; Xiang Hua; Tianyu Li; Michael J Birrer; Andrew K Godwin; Paul Cairns; Rugang Zhang
Journal:  Cancer Res       Date:  2011-08-04       Impact factor: 12.701

8.  Distinct roles for p107 and p130 in Rb-independent cellular senescence.

Authors:  Brian D Lehmann; Adam M Brooks; Matthew S Paine; William H Chappell; James A McCubrey; David M Terrian
Journal:  Cell Cycle       Date:  2008-03-07       Impact factor: 4.534

Review 9.  Aging by epigenetics--a consequence of chromatin damage?

Authors:  John M Sedivy; Gowrishankar Banumathy; Peter D Adams
Journal:  Exp Cell Res       Date:  2008-03-12       Impact factor: 3.905

10.  BRG1 is required for formation of senescence-associated heterochromatin foci induced by oncogenic RAS or BRCA1 loss.

Authors:  Zhigang Tu; Xinying Zhuang; Yong-Gang Yao; Rugang Zhang
Journal:  Mol Cell Biol       Date:  2013-02-25       Impact factor: 4.272

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