4.6 Article

The Thalidomide-Binding Domain of Cereblon Defines the CULT Domain Family and Is a New Member of the beta-Tent Fold

Journal

PLOS COMPUTATIONAL BIOLOGY
Volume 11, Issue 1, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pcbi.1004023

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Funding

  1. Max Planck Society

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Despite having caused one of the greatest medical catastrophies of the last century through its teratogenic side-effects, thalidomide continues to be an important agent in the treatment of leprosy and cancer. The protein cereblon, which forms an E3 ubiquitin ligase compex together with damaged DNA-binding protein 1 (DDB1) and cullin 4A, has been recently indentified as a primary target of thalidomide and its C-terminal part as responsible for binding thalidomide within a domain carrying several invariant cysteine and tryptophan residues. This domain, which we name CULT (cereblon domain of unknown activity, binding cellular ligands and thalidomide), is also found in a family of secreted proteins from animals and in a family of bacterial proteins occurring primarily in delta-proteobacteria. Its nearest relatives are yippee, a highly conserved eukaryotic protein of unknown function, and Mis18, a protein involved in the priming of centromeres for recruitment of CENP-A. Searches for distant homologs point to an evolutionary relationship of CULT, yippee, and Mis18 to proteins sharing a common fold, which consists of two four-stranded beta-meanders packing at a roughly right angle and coordinating a zinc ion at their apex. A beta-hairpin inserted into the first beta-meander extends across the bottom of the structure towards the C-terminal edge of the second b-meander, with which it forms a cradle-shaped binding site that is topologically conserved in all members of this fold. We name this the beta-tent fold for the striking arrangement of its constituent beta-sheets. The fold has internal pseudosymmetry, raising the possibility that it arose by duplication of a subdomain-sized fragment.

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