Literature DB >> 15611630

Heat shock, histone H3 phosphorylation and the cell cycle.

Mark H Dyson1, Stuart Thomson, Louis C Mahadevan.   

Abstract

Genome-wide and gene-specific changes in histone H3 phosphorylation during heat shock have recently been described using two well-established experimental models, the "puffing" of heat shock loci in Drosophila polytene chromosomes and the induction of hsp70 mRNA transcripts in cultured mouse cells. Despite conservation of the molecular participants and overall stress response in these two organisms, some striking differences have emerged. Here, we summarize accounts of heat shock-modulated histone phosphorylation in Drosophila and mouse cells highlighting these differences. In addition, we describe a further complexity of this response in cultured mouse cells that becomes apparent when the nucleosomal response, referring to histone H3 and HMGN1 phosphorylation, is monitored through the cell cycle. This suggests that some heat shock-induced effects in mouse cells may be indirect and arise as a secondary consequence of the effect of heat shock on the cell cycle, complicating comparisons between the fly and mouse systems.

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Year:  2005        PMID: 15611630     DOI: 10.4161/cc.4.1.1362

Source DB:  PubMed          Journal:  Cell Cycle        ISSN: 1551-4005            Impact factor:   4.534


  6 in total

1.  Cell cycle-dependent binding of HMGN proteins to chromatin.

Authors:  Srujana Cherukuri; Robert Hock; Tetsuya Ueda; Frédéric Catez; Mark Rochman; Michael Bustin
Journal:  Mol Biol Cell       Date:  2008-02-20       Impact factor: 4.138

2.  Heat-shock factor 1 controls genome-wide acetylation in heat-shocked cells.

Authors:  Sabrina Fritah; Edwige Col; Cyril Boyault; Jérôme Govin; Karin Sadoul; Susanna Chiocca; Elisabeth Christians; Saadi Khochbin; Caroline Jolly; Claire Vourc'h
Journal:  Mol Biol Cell       Date:  2009-09-30       Impact factor: 4.138

3.  Toll-like receptor agonists and febrile range hyperthermia synergize to induce heat shock protein 70 expression and extracellular release.

Authors:  Aditi Gupta; Zachary A Cooper; Mohan E Tulapurkar; Ratnakar Potla; Tapan Maity; Jeffrey D Hasday; Ishwar S Singh
Journal:  J Biol Chem       Date:  2012-12-04       Impact factor: 5.157

4.  Febrile-range temperature modifies cytokine gene expression in LPS-stimulated macrophages by differentially modifying NF-{kappa}B recruitment to cytokine gene promoters.

Authors:  Zachary A Cooper; Arundhati Ghosh; Aditi Gupta; Tapan Maity; Ivor J Benjamin; Stefanie N Vogel; Jeffrey D Hasday; Ishwar S Singh
Journal:  Am J Physiol Cell Physiol       Date:  2009-10-21       Impact factor: 4.249

5.  Chromosomal protein HMGN1 enhances the heat shock-induced remodeling of Hsp70 chromatin.

Authors:  Galina I Belova; Yuri V Postnikov; Takashi Furusawa; Yehudit Birger; Michael Bustin
Journal:  J Biol Chem       Date:  2008-01-24       Impact factor: 5.157

6.  The vaccinia virus E8R gene product is required for formation of transcriptionally active virions.

Authors:  Sayuri E M Kato; Richard C Condit; Nissin Moussatché
Journal:  Virology       Date:  2007-07-09       Impact factor: 3.616

  6 in total

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