Department of Molecular Biosciences, Northwestern University, Evanston, IL 60208, USA.
J Mol Biol. 2012 Apr 6;417(4):336-50. doi: 10.1016/j.jmb.2012.01.041. Epub 2012 Jan 30.
The metazoan cell membrane is highly organized. Maintaining such organization and preserving membrane integrity under different conditions are accomplished through intracellular tethering to an extensive, flexible protein network. Spectrin, the principal component of this network, is attached to the membrane through the adaptor protein ankyrin, which directly bridges the interaction between β-spectrin and membrane proteins. Ankyrins have a modular structure that includes two tandem ZU5 domains. The first domain, ZU5A, is directly responsible for binding β-spectrin. Here, we present a structure of the tandem ZU5 repeats of human erythrocyte ankyrin. Structural and biophysical experiments show that the second ZU5 domain, ZU5B, does not participate in spectrin binding. ZU5B is structurally similar to the ZU5 domain found in the netrin receptor UNC5b supramodule, suggesting that it could interact with other domains in ankyrin. Comparison of several ZU5 domains demonstrates that the ZU5 domain represents a compact and versatile protein interaction module.
真核细胞膜具有高度的组织性。为了在不同条件下维持这种组织并保持膜的完整性,细胞内通过与广泛的、灵活的蛋白质网络进行连接来实现。血影蛋白是该网络的主要成分,通过衔接蛋白锚蛋白与膜蛋白直接连接。锚蛋白具有模块化结构,包括两个串联的 ZU5 结构域。第一个结构域 ZU5A 直接负责与β-血影蛋白结合。在这里,我们展示了人红细胞锚蛋白串联 ZU5 重复的结构。结构和生物物理实验表明,第二个 ZU5 结构域 ZU5B 不参与血影蛋白的结合。ZU5B 在结构上与神经导向因子 UNC5b 超模块中的 ZU5 结构域相似,表明它可能与锚蛋白中的其他结构域相互作用。对几个 ZU5 结构域的比较表明,ZU5 结构域代表了一个紧凑且多功能的蛋白质相互作用模块。