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首页> 外文期刊>Cellular and molecular biology >Ubiquitination of spectrin regulates the erythrocyte spectrin-protein-4.1-actin ternary complex dissociation: implications for the sickle cell membrane skeleton.
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Ubiquitination of spectrin regulates the erythrocyte spectrin-protein-4.1-actin ternary complex dissociation: implications for the sickle cell membrane skeleton.

机译:血影蛋白的泛素化调节红血球血影蛋白-4.1-肌动蛋白三元复合体的解离:对镰状细胞膜骨架的影响。

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It has been demonstrated by our laboratory that the irreversibly sickled cell (ISC) spectrin-4.1-actin complex dissociates slowly as compared to ternary complexes formed out of control (AA) and reversibly sickle cell (RSCs) core skeletons. These studies indicated that the molecular basis for the inability of irreversibly sickled cells (ISCs) to change shape is a skeleton that disassembles, and therefore reassembles, very slowly. The present study is based on the following observations: a) alpha-spectrin repeats 20 and 21 contain ubiquitination sites, and b) The spectrin repeats beta-1 and beta-2 are in direct contact with spectrin repeats alpha-20 and alpha-21 during spectrin heterodimer formation, and contain the protein 4.1 binding domain. We demonstrate here that alpha-spectrin ubiquitination at repeats 20 and 21 increases the dissociation of the spectrin-protein-4.1-actin ternary complex thereby regulating protein 4.1's ability to stimulate the spectrin-actin interaction. Performing in vitro ternary complex dissociation assays with AA control and sickle cell SS spectrin (isolated from high-density sickle cells), we further demonstrate that reduced ubiquitination of alpha-spectrin is, in part, responsible for the locked membrane skeleton in sickle cell disease.
机译:我们的实验室已经证明,与失控(AA)和可逆镰状细胞(RSC)核心骨架形成的三元复合物相比,不可逆镰状细胞(ISC)血影蛋白-4.1-肌动蛋白复合物缓慢解离。这些研究表明,不可逆镰状细胞(ISC)不能改变形状的分子基础是非常缓慢地分解,因此重新组装的骨架。本研究基于以下观察结果:a)α-血影蛋白重复序列​​20和21包含泛素化位点,并且b)血影蛋白重复序列​​beta-1和beta-2与血影蛋白重复序列​​alpha-20和alpha-21直接接触。在血影蛋白异二聚体形成过程中,并含有蛋白4.1结合域。我们在这里证明重复20和21处的α-血影蛋白泛素化增加了血影蛋白-4.1-肌动蛋白三元复合物的解离,从而调节蛋白质4.1刺激血影蛋白-肌动蛋白相互作用的能力。用AA对照和镰状细胞SS血影蛋白(从高密度镰状细胞中分离)进行体外三元复合解离试验,我们进一步证明α-血影蛋白的泛素化减少部分是镰状细胞疾病中锁定膜骨架的原因。

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