首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Structure of the ZU5-ZU5-UPA-DD tandem of ankyrin-B reveals interaction surfaces necessary for ankyrin function
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Structure of the ZU5-ZU5-UPA-DD tandem of ankyrin-B reveals interaction surfaces necessary for ankyrin function

机译:锚蛋白B的ZU5-ZU5-UPA-DD串联结构揭示了锚蛋白功能所必需的相互作用表面

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摘要

Ankyrin-R/B/G (encoded by ANK1/2/3, respectively) are a family of very large scaffold proteins capable of anchoring numerous receptors and ion channels to specific, spectrin-containing membrane micro-domains. Hereditary mutations of ankyrins are known to be associated with diseases including spherocytosis, cardiac arrhythmia, and bipolar disorder in humans, although the underlying molecular bases are poorly understood. The middle spectrin-binding domain of ankyrins contains highly conserved ZU5-ZU5-UPA-DD domains arranged into the ZZUD tandem. Curiously, most of the disease-causing mutations in the tandem have no apparent impact on the spectrin binding of ankyrins. The high resolution structure of the ankyrin-B ZZUD tandem determined here reveals that the ZU5-ZU5-UPA domains form a tightly packed structural supramodule, whereas DD is freely accessible. Although the formation of the ZZU supramodule does not influence the spectrin binding of ankyrins, mutations altering the interdomain interfaces of ZZU impair the functions of ankyrin-B&G. Our structural analysis further indicates that the ZZU supramodule of ankyrins has two additional surfaces that may bind to targets other than spectrin. Finally, the structure of the ankyrin ZZUD provides mechanistic explanations to many disease-causing mutations identified in ankyrin-B&R.
机译:锚蛋白-R / B / G(分别由ANK1 / 2/3编码)是一个非常大的支架蛋白家族,能够将众多受体和离子通道锚定在特定的,含血影蛋白的膜微域上。众所周知,锚蛋白的遗传突变与疾病有关,包括人类的血球增多,心律不齐和双相情感障碍,尽管人们对其潜在的分子基础知之甚少。锚蛋白的中间血影蛋白结合结构域包含高度保守的ZU5-ZU5-UPA-DD结构域,排列成ZZUD串联。奇怪的是,大多数串联的致病突变对锚蛋白的血影蛋白结合没有明显影响。此处确定的锚蛋白-B ZZUD串联的高分辨率结构显示ZU5-ZU5-UPA域形成了紧密堆积的结构超模块,而DD是可自由访问的。尽管ZZU超模块的形成不影响锚蛋白的血影蛋白结合,但改变ZZU域间界面的突变会损害锚蛋白-B&G的功能。我们的结构分析进一步表明,锚蛋白的ZZU超模块具有两个其他表面,这些表面可能与血影蛋白以外的靶标结合。最后,锚蛋白ZZUD的结构为锚蛋白-B&R中鉴定的许多致病突变提供了机理解释。

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