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首页> 外文期刊>Biophysical Journal >The conserved L5 loop establishes the pre-powerstroke conformation of the Kinesin-5 motor, eg5.
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The conserved L5 loop establishes the pre-powerstroke conformation of the Kinesin-5 motor, eg5.

机译:保守的L5回路建立了Kinesin-5电动机(例如5)的大行程前构型。

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Kinesin superfamily motor proteins contain a structurally conserved loop near the ATP binding site, termed L5. The function of L5 is unknown, although several drug inhibitors of the mitotic kinesin Eg5 bind to L5. We used electron paramagnetic resonance spectroscopy (EPR) to investigate the function of L5 in Eg5. We site-specifically attached EPR probes to ADP, L5, and the neck linker element that docks along the enzymatic head to drive forward motility on microtubules (MTs). Nucleotide-dependent spectral mobility shifts occurred in all of these structural elements, suggesting that they undergo coupled conformational changes. These spectral shifts were altered by deletion of L5 or addition of S-trityl-l-cysteine (STLC), an allosteric inhibitor that binds to L5. In particular, EPR probes attached to the neck linker of MT-bound Eg5 shifted to a more immobilized component in the nucleotide-free state relative to the ADP-bound state, consistent with the neck linker docking upon ADP release. In contrast, after L5 deletion or STLC addition, EPR spectra were highly immobilized in all nucleotide states. We conclude that L5 undergoes a conformational change that enables Eg5 to bind to MTs in a pre-powerstroke state. Deletion or inhibition of L5 with the small-molecule inhibitor STLC blocks this pre-powerstroke state, forcing the Eg5 neck linker to dock regardless of the nucleotide state.
机译:驱动蛋白超家族运动蛋白在ATP结合位点附近包含一个结构保守的环,称为L5。 L5的功能是未知的,尽管有丝分裂驱动蛋白Eg5的几种药物抑制剂都与L5结合。我们使用电子顺磁共振波谱(EPR)来研究L5在Eg5中的功能。我们将APR,L5和沿着酶头对接的颈部连接元件的EPR探针特异性结合在位,以驱动微管(MT)向前运动。在所有这些结构元件中均发生了核苷酸依赖性光谱迁移率变化,表明它们经历了偶联的构象变化。这些光谱变化通过删除L5或添加S-三苯甲基-1-半胱氨酸(STLC)(一种与L5结合的变构抑制剂)而改变。尤其是,与MT结合的Eg5的颈部接头连接的EPR探针相对于与ADP结合的状态以无核苷酸的状态转移至更固定的组分,这与ADP释放时对接的颈部接头一致。相反,在删除L5或添加STLC之后,EPR光谱在所有核苷酸状态下均高度固定。我们得出的结论是,L5经历构象变化,使Eg5可以在中风前状态下与MT结合。用小分子抑制剂STLC删除或抑制L5会阻止这种中风前状态,从而迫使Eg5颈部接头对接,而与核苷酸状态无关。

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