首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Head of Myosin IX Binds Calmodulin and Moves Processively toward the Plus-end of Actin Filaments
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Head of Myosin IX Binds Calmodulin and Moves Processively toward the Plus-end of Actin Filaments

机译:肌球蛋白IX的负责人结合钙调蛋白并逐步向肌动蛋白丝的正端移动

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摘要

Mammalian myosin IXb (Myo9b) has been shown to exhibit unique motor properties in that it is a single-headed processive motor and the rate-limiting step in its chemical cycle is ATP hydrolysis. Furthermore, it has been reported to move toward the minus- and the plus-end of actin filaments. To analyze the contribution of the light chain-binding domain to the movement, processivity, and directionality of a single-headed processive myosin, we expressed constructs of Caenorhabditis elegans myosin IX (Myo9) containing either the head (Myo9-head) or the head and the light chain-binding domain (Myo9-head-4IQ). Both constructs supported actin filament gliding and moved toward the plus-end of actin filaments. We identified in the head of class IX myosins a calmodulin-binding site at the N terminus of loop 2 that is unique among the myosin superfamily members. Ca2+/calmodulin negatively regulated ATPase and motility of the Myo9-head. The Myo9-head demonstrated characteristics of a processive motor in that it supported actin filament gliding and pivoting at low motor densities. Quantum dot-labeled Myo9-head moved along actin filaments with a considerable run length and frequently paused without dissociating even in the presence of obstacles. We conclude that class IX myosins are plus-end-directed motors and that even a single head exhibits characteristics of a processive motor.
机译:哺乳动物肌球蛋白IXb(Myo9b)已显示出独特的运动特性,因为它是单头过程性运动电机,其化学循环中的限速步骤是ATP水解。此外,据报道它朝着肌动蛋白丝的负端和正端移动。为了分析轻链结合域对单头持续性肌球蛋白的运动,持续性和方向性的贡献,我们表达了秀丽隐杆线虫肌球蛋白IX(Myo9)的构建体,该构建体包含头部(Myo9-head)或头部和轻链结合结构域(Myo9-head-4IQ)。两种构建体均支持肌动蛋白丝滑动,并向肌动蛋白丝的正端移动。我们在第IX类肌球蛋白的头部确定了在环2 N端的钙调蛋白结合位点,在肌球蛋白超家族成员中是唯一的。 Ca 2 + / calmodulin负调节ATPase和Myo9头的运动。 Myo9磁头通过在较低的电机密度下支持肌动蛋白丝滑动和枢转,从而证明了步进电机的特性。量子点标记的Myo9头沿着肌动蛋白丝以相当长的游动长度移动,并且即使在存在障碍物的情况下也经常停下来而不会解离。我们得出的结论是,第IX类肌球蛋白是正向控制的电动机,甚至单个磁头也表现出过程性电动机的特征。

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