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Publication : NF-kappaB RelB forms an intertwined homodimer.

First Author  Huang DB Year  2005
Journal  Structure Volume  13
Issue  9 Pages  1365-73
PubMed ID  16154093 Mgi Jnum  J:247386
Mgi Id  MGI:5925443 Doi  10.1016/j.str.2005.06.018
Citation  Huang DB, et al. (2005) NF-kappaB RelB forms an intertwined homodimer. Structure 13(9):1365-73
abstractText  The X-ray structure of the RelB dimerization domain (DD) reveals that the RelBDD assumes an unexpected intertwined fold topology atypical of other NF-kappaB dimers. All typical NF-kappaB dimers are formed by the association of two independently folded immunoglobulin (Ig) domains. In RelBDD, two polypeptides reconstruct both Ig domains in the dimer with an extra beta sheet connecting the two domains. Residues most critical to NF-kappaB dimer formation are invariant in RelB, and Y300 plays a positive role in RelBDD dimer formation. The presence of RelB-specific nonpolar residues at the surface removes several intradomain surface hydrogen bonds that may render the domain fold unstable. Intertwining may stabilize the RelBDD homodimer by forming the extra beta sheet. We show that, as in the crystal, RelB forms an intertwined homodimer in solution. We suggest that the transiently stable RelB homodimer might prevent its rapid degradation, allowing for heterodimer formation with p50 and p52.
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