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首页> 外文期刊>Biophysical Journal >The Orphan Kinesin PAKRP2 Achieves Processive Motility via a Noncanonical Stepping Mechanism
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The Orphan Kinesin PAKRP2 Achieves Processive Motility via a Noncanonical Stepping Mechanism

机译:Orphan Kinesin Pakrp2通过非甘露透步骤机构实现了加工动机

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Phragmoplast-associated kinesin-related protein 2 (PAKRP2) is an orphan kinesin in Arabidopsis thaliana that is thought to transport vesicles along phragmoplast microtubules for cell plate formation. Here, using single-molecule fluorescence microscopy, we show that PAKRP2 is the first orphan kinesin to exhibit processive plus-end-directed motility on single microtubules as individual homodimers. Our results show that PAKRP2 processivity is achieved despite having an exceptionally long (32 residues) neck linker. Furthermore, using high-resolution nanoparticle tracking, we find that PAKRP2 steps via a hand-over-hand mechanism that includes frequent side steps, a prolonged diffusional search of the tethered head, and tight coupling of the ATP hydrolysis cycle to the forward-stepping cycle. Interestingly, truncating the PAKRP2 neck linker to 14 residues decreases the run length of PAKRP2; thus, the long neck linker enhances the processive behavior. Based on the canonical model of kinesin stepping, such a long neck linker is expected to decrease the processivity and disrupt the coupling of ATP hydrolysis to forward stepping. Therefore, we conclude that PAKRP2 employs a noncanonical strategy for processive motility, wherein a long neck linker is coupled with a slow ATP hydrolysis rate to allow for an extended diffusional search during each step without sacrificing processivity or efficiency.
机译:Phragmoplast相关的Kinesin相关蛋白2(PAKRP2)是拟南芥的孤儿蛋白,被认为是沿脓血血管片的囊泡用于细胞板形成。这里,使用单分子荧光显微镜,我们表明PAKRP2是第一个在单个微管中表现出作为单个偶像的加工加端的运动性。我们的结果表明,尽管具有特别长(32个残留物)颈部接头,但仍然实现了PAKRP2处理能力。此外,使用高分辨率纳米颗粒跟踪,我们发现PAKRP2通过手工侧面的机构,包括频繁的侧面步骤,长时间的延伸的旋转头部搜索,以及ATP水解循环的紧密耦合到前踏步循环。有趣的是,截断PAKRP2颈部接头到14个残留物降低了PAKRP2的润路长度;因此,长颈接头增强了加工行为。基于Kinesin踩踏的规范模型,预计这种长颈部接头将降低处理率并破坏ATP水解对前进踩踏的偶联。因此,我们得出结论,PAKRP2采用非甘露解的加工动机策略,其中长颈部接头与缓慢的ATP水解速率耦合,以允许在每个步骤期间延长扩散搜索,而不会牺牲处理率或效率。

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