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The E-Hook of Tubulin Interacts with Kinesins Head to Increase Processivity and Speed

机译:微管蛋白的电子钩与Kinesin的头部相互作用以提高生产力和速度

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摘要

Kinesins are dimeric motor proteins that move processively along microtubules. It has been proposed that the processivity of conventional kinesins is increased by electrostatic interactions between the positively charged neck of the motor and the negatively charged C-terminus of tubulin (E-hook). In this report we challenge this anchoring hypothesis by studying the motility of a fast fungal kinesin from Neurospora crassa (NcKin). NcKin is highly processive despite lacking the positive charges in the neck. We present a detailed analysis of how proteolytic removal of the E-hook affects truncated monomeric and dimeric constructs of NcKin. Upon digestion we observe a strong reduction of the processivity and speed of dimeric motor constructs. Monomeric motors with truncated or no neck display the same reduction of microtubule gliding speed as dimeric constructs, suggesting that the E-hook interacts with the head only. The E-hook has no effect on the strongly bound states of NcKin as microtubule digestion does not alter the stall forces produced by single dimeric motors, suggesting that the E-hook affects the interaction site of the kinesin·ADP-head and the microtubule. In fact, kinetic and binding experiments indicate that removal of the E-hook shifts the binding equilibrium of the weakly attached kinesin·ADP-head toward a more strongly bound state, which may explain reduced processivity and speed on digested microtubules.
机译:驱动蛋白是沿微管进行性移动的二聚体运动蛋白。已经提出,通过在马达的带正电的颈部和微管蛋白的带负电的C末端(E-钩)之间的静电相互作用来提高常规驱动蛋白的持续合成能力。在本报告中,我们通过研究来自神经孢霉(NcKin)的快速真菌驱动蛋白的运动性来挑战这一锚定假设。尽管颈部缺乏正电荷,NcKin仍具有高度的持续性。我们提出了对E钩蛋白水解去除如何影响NcKin的截短的单体和二聚体结构的详细分析。消化后,我们观察到二聚体马达构建体的生产力和速度大大降低。截短或无脖子的单体马达显示出与二聚体结构相同的微管滑动速度降低,表明E形钩仅与头部相互作用。 E钩对NcKin的强结合状态没有影响,因为微管消化不会改变单个二聚体马达产生的失速力,这表明E钩会影响驱动蛋白·ADP头与微管的相互作用位点。实际上,动力学和结合实验表明,去除E形钩可将弱连接的驱动蛋白·ADP头的结合平衡移向更牢固的结合状态,这可能解释了消化的微管的合成能力和速度降低。

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