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The Role of Response Elements Organization in Transcription Factor Selectivity: The IFN-beta Enhanceosome Example

  1. Author:
    Pan, Y. P.
    Nussinov, R.
  2. Author Address

    [Pan, YP; Nussinov, R] NCI, Basic Sci Program, SAIC Frederick, Ctr Canc Res Nanobiol Program, Frederick, MD 21701 USA [Nussinov, R] Tel Aviv Univ, Sackler Sch Med, Sackler Inst Mol Med, Dept Human Genet & Mol Med, IL-69978 Tel Aviv, Israel;Pan, YP (reprint author), NCI, Basic Sci Program, SAIC Frederick, Ctr Canc Res Nanobiol Program, Frederick, MD 21701 USA;ruthnu@helix.nih.gov
    1. Year: 2011
    2. Date: Jun
  1. Journal: Plos Computational Biology
    1. 7
    2. 6
    3. Pages: 14
  2. Type of Article: Article
  3. Article Number: e1002077
  4. ISSN: 1553-734X
  1. Abstract:

    What is the mechanism through which transcription factors (TFs) assemble specifically along the enhancer DNA? The IFN-beta enhanceosome provides a good model system: it is small; its components' crystal structures are available; and there are biochemical and cellular data. In the IFN-beta enhanceosome, there are few protein-protein interactions even though consecutive DNA response elements (REs) overlap. Our molecular dynamics (MD) simulations on different motif combinations from the enhanceosome illustrate that cooperativity is achieved via unique organization of the REs: specific binding of one TF can enhance the binding of another TF to a neighboring RE and restrict others, through overlap of REs; the order of the REs can determine which complexes will form; and the alternation of consensus and non-consensus REs can regulate binding specificity by optimizing the interactions among partners. Our observations offer an explanation of how specificity and cooperativity can be attained despite the limited interactions between neighboring TFs on the enhancer DNA. To date, when addressing selective TF binding, attention has largely focused on RE sequences. Yet, the order of the REs on the DNA and the length of the spacers between them can be a key factor in specific combinatorial assembly of the TFs on the enhancer and thus in function. Our results emphasize cooperativity via RE binding sites organization.

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External Sources

  1. DOI: 10.1371/journal.pcbi.1002077
  2. WOS: 000292381900023

Library Notes

  1. Fiscal Year: FY2010-2011
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