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Tau isoform-specific modulation of kinesin-driven microtubule gliding rates and trajectories as determined with tau-stabilized microtubules.

机译:Tau亚型特异性驱动蛋白驱动的微管滑动速率和轨迹的调节,用tau稳定的微管来确定。

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摘要

We have utilized tau-assembled and tau-stabilized microtubules (MTs), in the absence of taxol, to investigate the effects of tau isoforms with three and four MT binding repeats upon kinesin-driven MT gliding. MTs were assembled in the presence of either 3-repeat tau (3R tau) or 4-repeat tau (4R tau) at tau:tubulin dimer molar ratios that approximate those found in neurons. MTs assembled with 3R tau glided at 31.1 mum/min versus 25.8 mum/min for 4R tau, a statistically significant 17% difference. Importantly, the gliding rates for either isoform did not change over a fourfold range of tau concentrations. Further, tau-assembled MTs underwent minimal dynamic instability behavior while gliding and moved with linear trajectories. In contrast, MTs assembled with taxol in the absence of tau displayed curved gliding trajectories. Interestingly, addition of 4R tau to taxol-stabilized MTs restored linear gliding, while addition of 3R tau did not. The data are consistent with the ideas that (i) 3R and 4R tau-assembled MTs possess at least some isoform-specific features that impact upon kinesin translocation, (ii) tau-assembled MTs possess different structural features than do taxol-assembled MTs, and (iii) some features of tau-assembled MTs can be masked by prior assembly by taxol. The differences in kinesin-driven gliding between 3R and 4R tau suggest important features of tau function related to the normal shift in tau isoform composition that occurs during neural development as well as in neurodegeneration caused by altered expression ratios of otherwise normal tau isoforms.
机译:在没有紫杉醇的情况下,我们利用tau组装的和tau稳定的微管(MTs)来研究具有3和4个MT结合重复序列的tau异构体对驱动蛋白驱动MT滑动的影响。 MTs在3重复tau(3R tau)或4重复tau(4R tau)存在下,以tau:微管蛋白二聚体的摩尔比接近神经元中的摩尔比进行组装。用3R tau组装的MT滑行速度为31.1毫米/分钟,而4R tau的滑动速度为25.8毫米/分钟,差异有统计意义的17%。重要的是,两种同工型的滑动速率在tau浓度的四倍范围内都没有变化。此外,由tau组装的MT滑行并以线性轨迹移动时,其动态失稳性最小。相反,在没有tau的情况下与紫杉醇组装的MT表现出弯曲的滑行轨迹。有趣的是,在紫杉醇稳定的MTs中加入4R tau可以恢复线性滑行,而3R tau则不能。数据与以下想法相符:(i)3R和4R tau组装的MT至少具有一些影响驱动蛋白转运的同工型特异性特征;(ii)tau组装的MT与紫杉醇组装的MT具有不同的结构特征, (iii)紫杉醇可预先组装tau组装的MT的某些特征。在3R和4R tau之间由驱动蛋白驱动的滑行中的差异表明,tau功能的重要特征与在神经发育过程中发生的tau亚型组成的正常转变以及其他正常tau亚型的表达比例改变引起的神经变性有关。

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