The Nucleosome Remodeling and Deacetylase Complex Has an Asymmetric, Dynamic, and Modular Architecture

Summary: The nucleosome remodeling and deacetylase (NuRD) complex is essential for metazoan development but has been refractory to biochemical analysis. We present an integrated analysis of the native mammalian NuRD complex, combining quantitative mass spectrometry, cross-linking, protein biochemist...

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Bibliographic Details
Main Authors: Jason K.K. Low, Ana P.G. Silva, Mehdi Sharifi Tabar, Mario Torrado, Sarah R. Webb, Benjamin L. Parker, Maryam Sana, Callum Smits, Jason W. Schmidberger, Lou Brillault, Matthew J. Jackman, David C. Williams, Jr., Gerd A. Blobel, Sandra B. Hake, Nicholas E. Shepherd, Michael J. Landsberg, Joel P. Mackay
Format: Article
Language:English
Published: Elsevier 2020-12-01
Series:Cell Reports
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Online Access:http://www.sciencedirect.com/science/article/pii/S221112472031439X
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Summary:Summary: The nucleosome remodeling and deacetylase (NuRD) complex is essential for metazoan development but has been refractory to biochemical analysis. We present an integrated analysis of the native mammalian NuRD complex, combining quantitative mass spectrometry, cross-linking, protein biochemistry, and electron microscopy to define the architecture of the complex. NuRD is built from a 2:2:4 (MTA, HDAC, and RBBP) deacetylase module and a 1:1:1 (MBD, GATAD2, and Chromodomain-Helicase-DNA-binding [CHD]) remodeling module, and the complex displays considerable structural dynamics. The enigmatic GATAD2 controls the asymmetry of the complex and directly recruits the CHD remodeler. The MTA-MBD interaction acts as a point of functional switching, with the transcriptional regulator PWWP2A competing with MBD for binding to the MTA-HDAC-RBBP subcomplex. Overall, our data address the long-running controversy over NuRD stoichiometry, provide imaging of the mammalian NuRD complex, and establish the biochemical mechanism by which PWWP2A can regulate NuRD composition.
ISSN:2211-1247