Structural requirements for the specific binding of CRABP2 to cyclin D3.

Structure

Newcastle University Centre for Cancer, Translational and Clinical Research Institute, Newcastle University, Paul O'Gorman Building, Framlington Place, Newcastle upon Tyne NE2 4HH, UK. Electronic address:

Published: December 2024

AI Article Synopsis

  • CRABP2 is a protein that transports retinoic acid to the nucleus, where it activates gene transcription by interacting with retinoic acid receptors.
  • CRABP2 also binds specifically to cyclin D3, and the binding sites for cyclin D3 and retinoic acid overlap within a specific region of the protein.
  • Mutations that disrupt the binding of both cyclin D3 and retinoic acid alter the structure of CRABP2, revealing insights into its function and interaction with cyclin D3 in the context of the CDK4/6 complex.

Article Abstract

Cellular retinoic acid binding protein 2 (CRABP2) transports retinoic acid from the cytoplasm to the nucleus where it then transfers its cargo to retinoic acid receptor-containing complexes leading to activation of gene transcription. We demonstrate using purified proteins that CRABP2 is also a cyclin D3-specific binding protein and that the CRABP2 cyclin D3 binding site and the proposed CRABP2 nuclear localization sequence overlap. Both sequences are within the helix-loop-helix motif that forms a lid to the retinoic acid binding pocket. Mutations within this sequence that block both cyclin D3 and retinoic acid binding promote formation of a CRABP2 structure in which the retinoic acid binding pocket is occupied by an alternative lid conformation. Structural and functional analysis of CRABP2 and cyclin D3 mutants combined with AlphaFold models of the ternary CDK4/6-cyclin D3-CRABP2 complex supports the identification of an α-helical protein binding site on the cyclin D3 C-terminal cyclin box fold.

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http://dx.doi.org/10.1016/j.str.2024.09.020DOI Listing

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