4.7 Article

Conformational Locking upon Cooperative Assembly of Notch Transcription Complexes

Journal

STRUCTURE
Volume 20, Issue 2, Pages 340-349

Publisher

CELL PRESS
DOI: 10.1016/j.str.2011.12.011

Keywords

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Funding

  1. NIH [R01 CA092433, P01 CA119070, R01 GM086507]
  2. NSF [RCN 0639193]
  3. Waters Corporation
  4. Leukemia and Lymphoma Society Special Center of Research

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The Notch intracellular domain (NICD) forms a transcriptional activation complex with the DNA-binding factor CSL and a transcriptional co-activator of the Mastermind family (MAML). The RAM region of NICD recruits Notch to CSL, facilitating the binding of MAML at the interface between the ankyrin (ANK) repeat domain of NICD and CSL. Here, we report the X-ray structure of a human MAML1/RAM/ANK/CSL/DNA complex, and probe changes in component dynamics upon stepwise assembly of a MAML1/NICD/CSL complex using HX-MS. Association of CSL with NICD exerts remarkably little effect on the exchange kinetics of the ANK domain, whereas MAML1 binding greatly retards the exchange kinetics of ANK repeats 2-3. These exchange patterns identify critical features contributing to the cooperative assembly of Notch transcription complexes (NTCs), highlight the importance of MAML recruitment in rigidifying the ANK domain and stabilizing its interface with CSL, and rationalize the requirement for MAML1 in driving cooperative dimerization of NTCs on paired-site DNA.

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