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Impact of Feedback Phosphorylation and Raf Heterodimerization on Normal and Mutant B-Raf Signaling

  1. Author:
    Ritt, D. A.
    Monson, D. M.
    Specht, S. I.
    Morrison, D. K.
  2. Author Address

    [Ritt, Daniel A.; Monson, Daniel M.; Specht, Suzanne I.; Morrison, Deborah K.] NCI, Lab Cell & Dev Signaling, Frederick, MD 21701 USA.;Morrison, DK, NCI, Lab Cell & Dev Signaling, Bldg 560,Room 22-103,Chandler St,POB B, Frederick, MD 21701 USA.;morrisond@mail.nih.gov
    1. Year: 2010
    2. Date: Feb
  1. Journal: Molecular and Cellular Biology
    1. 30
    2. 3
    3. Pages: 806-819
  2. Type of Article: Article
  3. ISSN: 0270-7306
  1. Abstract:

    The B-Raf kinase is a Ras pathway effector activated by mutation in numerous human cancers and certain developmental disorders. Here we report that normal and oncogenic B-Raf proteins are subject to a regulatory cycle of extracellular signal-regulated kinase (ERK)-dependent feedback phosphorylation, followed by PP2A- and Pin1-dependent dephosphorylation/recycling. We identify four S/TP sites of B-Raf phosphorylated by activated ERK and find that feedback phosphorylation of B-Raf inhibits binding to activated Ras and disrupts heterodimerization with C-Raf, which is dependent on the B-Raf pS729/14-3-3 binding site. Moreover, we find that events influencing Raf heterodimerization can alter the transforming potential of oncogenic B-Raf proteins possessing intermediate or impaired kinase activity but have no significant effect on proteins with high kinase activity, such as V600E B-Raf. Mutation of the feedback sites or overexpression of the Pin1 prolyl-isomerase, which facilitates B-Raf dephosphorylation/recycling, resulted in increased transformation, whereas mutation of the S729/14-3-3 binding site or expression of dominant negative Pin1 reduced transformation. Mutation of each feedback site caused increased transformation and correlated with enhanced heterodimerization and activation of C-Raf. Finally, we find that B-Raf and C-Raf proteins containing mutations identified in certain developmental disorders constitutively heterodimerize and that their signaling activity can also be modulated by feedback phosphorylation.

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External Sources

  1. DOI: 10.1128/mcb.00569-09
  2. WOS: 000273700700020

Library Notes

  1. Fiscal Year: FY2009-2010
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