Department of Cell and Molecular Biology, Northwestern University, Chicago, Illinois, USA.
Biophys J. 2011 Dec 7;101(11):2760-9. doi: 10.1016/j.bpj.2011.10.032.
Eg5 is a homotetrameric kinesin-5 motor protein that generates outward force on the overlapping, antiparallel microtubules (MTs) of the mitotic spindle. Upon binding an MT, an Eg5 dimer releases one ADP molecule, undergoes a slow (∼0.5 s(-1)) isomerization, and finally releases a second ADP, adopting a tightly MT-bound, nucleotide-free (APO) conformation. This conformation precedes ATP binding and stepping. Here, we use mutagenesis, steady-state and pre-steady-state kinetics, motility assays, and electron paramagnetic resonance spectroscopy to examine Eg5 monomers and dimers as they bind MTs and initiate stepping. We demonstrate that a critical element of Eg5, loop 5 (L5), accelerates ADP release during the initial MT-binding event. Furthermore, our electron paramagnetic resonance data show that L5 mediates the slow isomerization by preventing Eg5 dimer heads from binding the MT until they release ADP. Finally, we find that Eg5 having a seven-residue deletion within L5 can still hydrolyze ATP and move along MTs, suggesting that L5 is not required to accelerate subsequent steps of the motor along the MT. Taken together, these properties of L5 explain the kinetic effects of L5-directed inhibition on Eg5 activity and may direct further interventions targeting Eg5 activity.
Eg5 是一个四聚体驱动蛋白-5,它在有丝分裂纺锤体的重叠、反平行微管(MTs)上产生向外的力。当 Eg5 结合到 MT 上时,一个 Eg5 二聚体释放一个 ADP 分子,经历一个缓慢(约 0.5 s(-1))的异构化,最后释放第二个 ADP,采用紧密结合 MT、无核苷酸(APO)的构象。这种构象发生在 ATP 结合和步移之前。在这里,我们使用突变、稳态和预稳态动力学、运动分析和电子顺磁共振波谱来研究 Eg5 单体和二聚体结合 MT 并启动步移的过程。我们证明了 Eg5 的一个关键元件,环 5(L5),在最初的 MT 结合事件中加速 ADP 的释放。此外,我们的电子顺磁共振数据表明,L5 通过防止 Eg5 二聚体头部在释放 ADP 之前与 MT 结合,从而介导了缓慢的异构化。最后,我们发现 L5 内有 7 个残基缺失的 Eg5 仍然可以水解 ATP 并沿 MT 运动,这表明 L5 不需要加速 MT 上马达的后续步骤。总之,L5 的这些特性解释了 L5 定向抑制对 Eg5 活性的动力学影响,并可能指导针对 Eg5 活性的进一步干预。