首页> 外文期刊>The Journal of biological chemistry >The Switch-associated Protein 70 (SWAP-70) Bundles Actin Filaments and Contributes to the Regulation of F-actin Dynamics
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The Switch-associated Protein 70 (SWAP-70) Bundles Actin Filaments and Contributes to the Regulation of F-actin Dynamics

机译:交换相关蛋白70(SWAP-70)捆绑肌蛋白细丝并有助于调节F-Actin动态

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Coordinated assembly and disassembly of actin into filaments and higher order structures such as stress fibers and lamellipodia are fundamental for cell migration and adhesion. However, the precise spatiotemporal regulation of F-actin structures is not completely understood. SWAP-70, a phosphatidylinositol 3,4,5-trisphosphate-interacting, F-actin-binding protein, participates in actin rearrangements through yet unknown mechanisms. Here, we show that SWAP-70 is an F-actin-bundling protein that oligomerizes through a Gln/Glu-rich stretch within a coiled-coil region. SWAP-70 bundles filaments in parallel and anti-parallel fashion through its C-terminal F-actin binding domain and delays dilution-induced F-actin depolymerization. We further demonstrate that SWAP-70 co-localizes and directly interacts with cofilin, an F-actin severing and depolymerization factor, and contributes to the regulation of cofilin activity in vivo. In line with these activities, upon stem cell factor stimulation, murine bone marrow-derived mast cells lacking SWAP-70 display aberrant regulation of F-actin and actin free barbed ends dynamics. Moreover, proper stem cell factor-dependent cofilin activation via dephosphorylation and subcellular redistribution into a detergent-resistant cytoskeletal compartment also require SWAP-70. Together, these findings reveal an important role of SWAP-70 in the dynamic spatiotemporal regulation of F-actin networks.
机译:将肌动蛋白的协调组装和拆卸成长丝和高阶结构,如应力纤维和薄层胶质是细胞迁移和粘附的基础。然而,不完全理解F-actin结构的精确时空调节。 Swap-70,磷脂酰肌醇3,4,5-三磷酸酯相互作用,F-肌动蛋白结合蛋白参与肌动蛋白重排通过尚未取消的机制。这里,我们表明Swap-70是F-肌动蛋白嵌入蛋白,其通过卷绕线圈区域内的GLN / Glu的伸展抗体。通过其C-末端F-actin结合结构域并联和抗并联的封闭丝并延迟稀释诱导的F型肌动蛋白解聚。我们进一步证明Swap-70共定并直接与Cofilin,F-肌动蛋白切断和解聚因子相互作用,并有助于在体内调节Cofilin活性。符合这些活性,在干细胞因子刺激时,缺乏Swap-70的鼠骨髓衍生的肥大细胞显示F-actin的异常调节,并致动肌动蛋白的刺激末端动力学。此外,通过去磷酸化和亚细胞再分布在抗洗涤剂抗性细胞骨架室中的适当干细胞因子依赖性钴蛋白活化也需要SWAP-70。这些发现在一起揭示了Swap-70在F-Actin网络的动态时滞调节中的重要作用。

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