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Structural Change in the Dynein Stalk Region Associated with Two Different Affinities for the Microtubule

机译:动力蛋白茎区域的结构变化与微管的两个不同的亲和力相关联。

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Dynein is a large microtubule-based motor complex that requires tight coupling of intra-molecular ATP hydrolysis with the generation of mechanical force and track-binding activity. However, the microtubule-binding domain is structurally separated by about 15 nm from the nucleotide-binding sites by a coiled-coil stalk. Thus, long-range two-way communication is necessary for coordination between the catalytic cycle of ATP hydrolysis and dynein's track-binding affinities. To investigate the structural changes that occur in the dynein stalk region to produce two different microtubule affinities, here we improve the resolution limit of the previously reported structure of the entire stalk region and we investigate structural changes in the dynein stalk and strut/buttress regions by comparing currently available X-ray structures. In the light of recent crystal structures, the basis of the transition from the low-affinity to the high-affinity coiled-coil registry is discussed. A concerted movement model previously reported by Carter and Vale is modified more specifically, and we proposed it as the open zipper model. (C) 2015 Elsevier Ltd. All rights reserved.
机译:Dynein是一种大型的基于微管的运动复合物,需要分子内ATP水解与产生机械力和轨道结合活性紧密结合。然而,微管结合结构域通过卷曲螺旋茎与核苷酸结合位点在结构上分开约15nm。因此,远程双向通讯对于协调ATP水解的催化循环和达因宁的轨道结合亲和力是必要的。为了研究在达因杆区域中发生的结构变化以产生两种不同的微管亲和力,我们在此提高了先前报告的整个杆区域结构的分辨率极限,并通过以下方法研究了达因杆和支撑杆/支撑区域中的结构变化:比较当前可用的X射线结构。根据最近的晶体结构,讨论了从低亲和力到高亲和力的螺旋线圈配准的过渡的基础。更具体地修改了先前由Carter和Vale报告的协同运动模型,我们将其建议为开放拉链模型。 (C)2015 Elsevier Ltd.保留所有权利。

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