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首页> 外文期刊>Nature Communications >Direct observation shows superposition and large scale flexibility within cytoplasmic dynein motors moving along microtubules
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Direct observation shows superposition and large scale flexibility within cytoplasmic dynein motors moving along microtubules

机译:直接观察显示沿微管移动的细胞质动力蛋白中的叠加和大规模柔性

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摘要

Cytoplasmic dynein is a dimeric AAA+ motor protein that performs critical roles in eukaryotic cells by moving along microtubules using ATP. Here using cryo-electron microscopy we directly observe the structure of Dictyostelium discoideum dynein dimers on microtubules at near-physiological ATP concentrations. They display remarkable flexibility at a hinge close to the microtubule binding domain (the stalkhead) producing a wide range of head positions. About half the molecules have the two heads separated from one another, with both leading and trailing motors attached to the microtubule. The other half have the two heads and stalks closely superposed in a front-to-back arrangement of the AAA+ rings, suggesting specific contact between the heads. All stalks point towards the microtubule minus end. Mean stalk angles depend on the separation between their stalkheads, which allows estimation of inter-head tension. These findings provide a structural framework for understanding dynein’s directionality and unusual stepping behaviour.
机译:细胞质动力蛋白是一种二聚体AAA + 运动蛋白,通过使用ATP沿微管移动,在真核细胞中起关键作用。在这里,使用冷冻电子显微镜,我们可以在接近生理浓度的ATP浓度下直接观察微管上的盘基网柄菌动力蛋白二聚体的结构。它们在靠近微管结合结构域(茎头)的铰链处显示出显着的柔韧性,产生广泛的头部位置。大约一半的分子的两个头部彼此分开,前导马达和尾随马达都附着在微管上。另一半的两个头和茎以AAA + 环的前后排列紧密叠放,表明两个头之间存在特定的接触。所有茎都指向微管负端。平均杆角度取决于其杆头之间的间距,这可以估算杆头间的张力。这些发现为理解达因的方向性和不寻常的踩踏行为提供了结构框架。

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