ATP‐dependent nucleosome remodeling complexes: Enzymes tailored to deal with chromatin
- 4 March 2004
- journal article
- review article
- Published by Wiley in Journal of Cellular Biochemistry
- Vol. 91 (6) , 1087-1098
- https://doi.org/10.1002/jcb.20005
Abstract
Chromatin remodeling complexes play a central role in the control of nuclear processes that utilize genomic DNA as a template including transcription, replication, recombination, and repair. Modulation of chromatin structure is mediated by a wide variety of enzymes which can affect nucleosome stability by either disrupting histone‐DNA contacts or by covalently modifying histones and/or DNA. Although the biochemical properties of most chromatin‐modifying enzymes have been well characterized and links between histone and DNA‐modifying enzymes and ATP‐dependent chromatin remodeling complexes have been established, the importance of their concerted action has just begun to emerge. As more and more genes are examined, new rules are being established about their transcriptional regulation, and it is becoming clear that diverse mechanisms are used to modify chromatin and either promote or hinder accessibility to DNA and histones. Moreover, the involvement of ATP‐dependent chromatin remodelers in transcriptional regulation of cyclin genes and the association of misregulated expression of chromatin remodeling subunits with many cancers highlight the importance of chromatin remodeling complexes in the control of cell growth and proliferation.Keywords
This publication has 61 references indexed in Scilit:
- Tps1 regulates the pentose phosphate pathway, nitrogen metabolism and fungal virulenceThe EMBO Journal, 2007
- Sticky BusinessCell, 2003
- ATP-Dependent Nucleosome RemodelingAnnual Review of Biochemistry, 2002
- Translating the Histone CodeScience, 2001
- When the SWI/SNF complex remodels … the cell cycleOncogene, 2001
- Characterization of SWI/SNF protein expression in human breast cancer cell lines and other malignanciesJournal of Cellular Physiology, 2000
- NuRD and SIN3Trends in Genetics, 2000
- Purification and Characterization of a Human Factor That Assembles and Remodels ChromatinJournal of Biological Chemistry, 2000
- Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complexNature, 1994
- Characterization of the yeast SWI1, SWI2, and SWI3 genes, which encode a global activator of transcriptionCell, 1992