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NF-kappa B ROB forms an intertwined homodimer

机译:NF-κB ROB形成交织的同型二聚体

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摘要

The X-ray structure of the ReIB dimerization domain (DD) reveals that the ReIBDD assumes an unexpected intertwined fold topology atypical of other NF-kappa B dimers. All typical NF-kappa B dimers are formed by the association of two independently folded immunoglobulin (Ig) domains. In ReIBDD, two polypeptides reconstruct both Ig domains in the dimer with an extra beta sheet connecting the two domains. Residues most critical to NF-kappa B dimer formation are invariant in ReIB, and Y300 plays a positive role in ReIBDD dimer formation. The presence of ReIB-specific nonpolar residues at the surface removes several intradomain surface hydrogen bonds that may render the domain fold unstable. Intertwining may stabilize the ReIBDD homodimer by forming the extra beta sheet. We show that, as in the crystal, ReIB forms an intertwined homodimer in solution. We suggest that the transiently stable ReIB homodimer might prevent its rapid degradation, allowing for heterodimer formation with p50 and p52.
机译:ReIB二聚化域(DD)的X射线结构表明,ReIBDD假定具有其他NF-κB二聚体非典型的意想不到的交织折叠拓扑。所有典型的NF-κB二聚体均由两个独立折叠的免疫球蛋白(Ig)域结合而成。在ReIBDD中,两个多肽在二聚体中重建两个Ig结构域,并带有连接两个结构域的额外β折叠。对NF-κB二聚体形成最关键的残基在ReIB中是不变的,而Y300在ReIBDD二聚体的形成中起着积极的作用。 ReIB特定的非极性残基在表面上的存在消除了几个畴内表面氢键,这些氢键可能使畴折叠不稳定。相互缠绕可以通过形成额外的β折叠来稳定ReIBDD同型二聚体。我们证明,与晶体一样,ReIB在溶液中形成缠结的同二聚体。我们建议暂时稳定的ReIB同型二聚体可能阻止其快速降解,从而允许与p50和p52形成异源二聚体。

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