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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Three-dimensional structure of cytoplasmic dynein bound to microtubules
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Three-dimensional structure of cytoplasmic dynein bound to microtubules

机译:细胞质动力蛋白与微管结合的三维结构

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摘要

Cytoplasmic dynein is a large, microtubule-dependent molecular motor (1.2 MDa). Although the structure of dynein by itself has been characterized, its conformation in complex with microtubules is still unknown. Here, we used cryoelectron microscopy (cryo-EM) to visualize the interaction between dynein and microtubules. Most dynein molecules in the nucleotide-free state are bound to the microtubule in a defined conformation and orientation. A 3D image reconstruction revealed that dynein's head domain, formed by a ring-like arrangement of AAA+ domains, is located 280 A away from the center of the microtubule. The order of the AAA+ domains in the ring was determined by using recombinant markers. Furthermore, a 3D helical image reconstruction of microtubules with a dynein's microtubule binding domain [dynein stalk (DS)] revealed that the stalk extends perpendicular to the microtubule. By combining the 3D maps of the dynein-microtubule and DS-microtubule complexes, we present a model for how dynein in the nucleotide-free state binds to microtubules and discuss models for dynein's power stroke.
机译:细胞质动力蛋白是一种大型的,依赖微管的分子运动蛋白(1.2 MDa)。尽管动力蛋白本身的结构已被表征,但其与微管复合的构象仍是未知的。在这里,我们使用了冷冻电子显微镜(cryo-EM)来可视化动力蛋白和微管之间的相互作用。大多数无核苷酸状态的达因分子均以定义的构象和方向与微管结合。 3D图像重建显示,由AAA +域的环状排列形成的动力蛋白的头部域位于距微管中心280 A的位置。使用重组标记确定环中AAA +域的顺序。此外,具有动力蛋白微管结合域[动力蛋白茎(DS)]的微管3D螺旋图像重建显示,该茎垂直于微管延伸。通过结合动力蛋白-微管和DS-微管复合物的3D图,我们提出了一种无核苷酸状态的动力蛋白如何与微管结合的模型,并讨论了动力蛋白中风的模型。

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