首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The carboxyterminal EF domain of erythroid alpha-spectrin is necessary for optimal spectrin-actin binding.
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The carboxyterminal EF domain of erythroid alpha-spectrin is necessary for optimal spectrin-actin binding.

机译:红血球α-血影蛋白的羧基末端EF域对于最佳血影蛋白-肌动蛋白结合是必需的。

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摘要

Spectrin and protein 4.1R crosslink F-actin, forming the membrane skeleton. Actin and 4.1R bind to one end of beta-spectrin. The adjacent end of alpha-spectrin, called the EF domain, is calmodulin-like, with calcium-dependent and calcium-independent EF hands. The severely anemic sph(1J)/sph(1J) mouse has very fragile red cells and lacks the last 13 amino acids in the EF domain, implying that the domain is critical for skeletal integrity. To test this, we constructed a minispectrin heterodimer from the actin-binding domain, the EF domain, and 4 adjacent spectrin repeats in each chain. The minispectrin bound to F-actin in the presence of native human protein 4.1R. Formation of the spectrin-actin-4.1R complex was markedly attenuated when the minispectrin contained the shortened sph(1J) alpha-spectrin. The alpha-spectrin deletion did not interfere with spectrin heterodimer assembly or 4.1R binding but abolished the binary interaction between spectrin and F-actin. The data show that the alpha-spectrin EF domain greatly amplifies the function of the beta-spectrin actin-binding domain (ABD) in forming the spectrin-actin-4.1R complex. A model, based on the structure of alpha-actinin, suggests that the EF domain modulates the function of the ABD and that the C-terminal EF hands (EF(34)) may bind to the linker that connects the ABD to the first spectrin repeat.
机译:血影蛋白和蛋白质4.1R交联F-肌动蛋白,形成膜骨架。肌动蛋白和4.1R绑定到β-spectrin的一端。 α-血影蛋白的相邻末端称为EF域,呈钙调蛋白样,具有钙依赖性和钙非依赖性EF手。严重贫血的sph(1J)/ sph(1J)小鼠的红细胞非常脆弱,并且缺少EF域中的最后13个氨基酸,这意味着该域对于骨骼完整性至关重要。为了测试这一点,我们从肌动蛋白结合域,EF域和每条链中的4个相邻血影蛋白重复序列​​构建了一个微谱异源二聚体。在天然人类蛋白4.1R存在下,小光谱蛋白与F-肌动蛋白结合。当minispectrin包含缩短的sph(1J)α-spectrin时,血影蛋白-肌动蛋白-4.1R复合物的形成显着减弱。 α-血影蛋白的删除不干扰血影蛋白异二聚体组装或4.1R绑定,但取消了血影蛋白与F-肌动蛋白之间的二元相互作用。数据表明,α-血影蛋白EF结构域在形成血影蛋白-肌动蛋白-4.1R复合物时极大地放大了β-血影肌动蛋白结合域(ABD)的功能。基于α-肌动蛋白结构的模型表明,EF域调节ABD的功能,C端EF手(EF(34))可能与将ABD连接至第一光谱的接头结合重复。

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