Mizuno Naoko, Narita Akihiro, Kon Takahide, Sutoh Kazuo, Kikkawa Masahide
Department of Cell Biology, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390-9039, USA.
Proc Natl Acad Sci U S A. 2007 Dec 26;104(52):20832-7. doi: 10.1073/pnas.0710406105. Epub 2007 Dec 19.
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 approximately 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.
胞质动力蛋白是一种大型的、依赖微管的分子马达(1.2兆道尔顿)。尽管动力蛋白自身的结构已得到表征,但其与微管结合时的构象仍不清楚。在这里,我们使用冷冻电子显微镜(cryo-EM)来观察动力蛋白与微管之间的相互作用。大多数处于无核苷酸状态的动力蛋白分子以特定的构象和方向与微管结合。三维图像重建显示,由AAA+结构域呈环状排列形成的动力蛋白头部结构域距离微管中心约280埃。通过使用重组标记物确定了环中AAA+结构域的顺序。此外,对带有动力蛋白微管结合结构域[动力蛋白柄(DS)]的微管进行三维螺旋图像重建显示,柄垂直于微管延伸。通过结合动力蛋白-微管和DS-微管复合物的三维图谱,我们提出了一个无核苷酸状态的动力蛋白如何与微管结合的模型,并讨论了动力蛋白动力冲程的模型。