Autor: |
Tolstorukov, Michael Y., Sansam, Courtney G., Ping Lu, Koellhoffer, Edward C., Helming, Katherine C., Alver, Burak H., Tillman, Erik J., Evans, Julia A., Wilson, Boris G., Park, Peter J., Roberts, Charles W. M. |
Předmět: |
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Zdroj: |
Proceedings of the National Academy of Sciences of the United States of America; 6/18/2013, Vol. 110 Issue 25, p10165-10170, 6p |
Abstrakt: |
Precise nucleosome-positioning patterns at promoters are thought to be crucial for faithful transcriptional regulation. However, the mechanisms by which these patterns are established, are dynamically maintained, and subsequently contribute to transcriptional control are poorly understood. The switch/sucrose non-fermentable chromatin remodeling complex, also known as the Brgl associated factors complex, is a master developmental regulator and tumor suppressor capable of mobilizing nucleosomes in biochemical assays. However, its role in establishing the nucleosome landscape in vivo is unclear. Here we have inactivated Snf 5 and Brgl. core subunits of the mammalian Swi/Snf complex, to evaluate their effects on chromatin structure and transcription levels genomewide. We find that inactivation of either subunit leads to disruptions of specific nucleosome patterning combined with a loss of overall nucleosome occupancy at a large number of promoters, regardless of their association with CpG islands. These rearrangements are accompanied by gene expression changes that promote cell proliferation. Collectively, these findings define a direct relationship between chromatin-remodeling complexes, chromatin structure, and transcriptional regulation. [ABSTRACT FROM AUTHOR] |
Databáze: |
Complementary Index |
Externí odkaz: |
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