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Dynactin p150 promotes processive motility of DDB complexes by minimizing diffusional behavior of dynein

机译:Dynactin P150通过最小化Dynein的扩散行为来促进DDB复合物的加工活性

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Cytoplasmic dynein is activated by forming a complex with dynactin and the adaptor protein BicD2. We used interferometric scattering (iSCAT) microscopy to track dynein-dynactin-BicD2 (DDB) complexes in vitro and developed a regression-based algorithm to classify switching between processive, diffusive, and stuck motility states. We find that DDB spends 65% of its time undergoing processive stepping, 4% undergoing 1D diffusion, and the remaining time transiently stuck to the microtubule. Although the p150 subunit was previously shown to enable dynactin diffusion along microtubules, blocking p150 enhanced the proportion of time DDB diffused and reduced the time DDB processively walked. Thus, DDB diffusive behavior most likely results from dynein switching into an inactive (diffusive) state, rather than p150 tethering the complex to the microtubule. DDB-kinesin-1 complexes, formed using a DNA adapter, moved slowly and persistently, and blocking p150 led to a 70 nm/s plus-end shift in the average velocity of the complexes, in quantitative agreement with the shift of isolated DDB into the diffusive state. The data suggest a DDB activation model in which dynactin p150 enhances dynein processivity not solely by acting as a diffusive tether that maintains microtubule association, but rather by acting as an allosteric activator that promotes a conformation of dynein optimal for processive stepping. In bidirectional cargo transport driven by the opposing activities of kinesin and dynein-dynactin-BicD2, the dynactin p150 subunit promotes retrograde transport and could serve as a target for regulators of transport.
机译:通过用Dynactin和适配器蛋白BICD2形成复合物来激活细胞质Dynein。我们使用干涉测量散射(ISCAT)显微镜以在体外跟踪Dynein-Dynactin-BICD2(DDB)复合物,并开发了一种基于回归的算法,以分类加工,扩散和卡在动机状态之间的切换。我们发现DDB花费65%的时间接受加工步进,4%正在进行的1D扩散,并且瞬时粘附到微管的剩余时间。尽管先前显示P150亚基沿着微管使Dynactin扩散能够,但是阻塞P150增强了DDB扩散的时间比例并降低了DDB处理地走动的时间。因此,DDB扩散行为最有可能从Dynein切换到无活性(扩散)状态,而不是将复合物束缚到微管的P150。使用DNA适配器形成的DDB-kinesin-1配合物缓慢且持续地移动,并阻塞P150在与孤立的DDB的偏移中的平均速度相一致的综合速度下的70nm / s加端。漫游状态。数据表明Dynactin P150的DDB活化模型,其中Dynactin P150不能仅通过作为维持微管吻合的扩散系绳来增强Dyneinc处理率,而是通过作为促进治疗阶梯的Dynein最佳的构象的颠致活化剂来增强Dynein Courcuation。在由Kinesin和DyniN-Dynactin-BICD2的相反活动驱动的双向货物运输中,Dynactin P150亚基促进逆行运输,并可作为运输调节剂的靶标。

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